NIF&PS Directorate Related Journal Article List
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- Only refereed journal articles via Web of Science
- Relevance of article content to NIF & PS Directorate
- Author affiliation
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- All Geometries, Physics, & Measurements
- Drive Configuration
- Indirect Drive
- Direct Drive
- Drive Symmetry
- Convergent
- Cylindrical Convergent
- Planar
- Hohlraum
- Half Hohlraum
- Sphere
- Gaspipe
- Foil
- Physics
- ICF
- LPI
- Spectroscopy
- X-ray Conversion
- Equation of State
- Nuclear Science
- Hydrodynamics
- Astrophysics
- Measurement Types
- Convergent ablator (ConA)
- Shock Timing
- X-ray Radiography
- Proton Radiography
- Advanced Radiographic Capability (ARC)
- In-situ Diffraction
- Extended X-ray Absorption Fine structure
- X-ray Thomson scattering
- Particle Spectroscopy
- Radiation Effects
First Author | Year | hidden | hidden | hidden | hidden |
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Meaney, KD, et al., "Separated reactant mix width across diffusion-dominated and hydrodynamically dominated interface mix in inertial confinement fusion implosions" Phys. Rev. E, v. 110, 55203 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Divol, L, et al., "Thermonuclear performance variability near ignition at the National Ignition Facility" Phys. Plasmas, v. 31, 102703 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Sio, H, et al., "Measurements of K-edge and L-edge extended x-ray absorption fine structure at the national ignition facility (invited)" Rev. Sci. Instrum., v. 95, 103523 (2024) | 2024 | directorate_science_topics | icf_hed | direct_drive, planar, Extended X-ray absorption fine structure | |
Izumi, N, et al., "Neutron imaging of the deuterium-tritium tamping gas volume in an inertial confinement fusion hohlraum" Rev. Sci. Instrum., v. 95, 103510 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Do, A, et al., "Study of shocks and ablation front in diamond ablator during a capsule implosion experiment at the National Ignition Facility" High Energy Density Phys., v. 53, 101161 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Walsh, CA, et al., "Kinetic corrections to heat-flow and Nernst advection for laser heated plasmas" Phys. Plasmas, v. 31, 102704 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Thomas, CA, et al., "Applications of a Rayleigh-Taylor model to direct-drive laser fusion" Phys. Rev. E, v. 110, 45203 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Alessi, DA, et al., "Pulse compressor architecture to enable next-generation high-energy petawatt-class lasers" Opt. Express, v. 32, 41539-41549 (2024) | 2024 | directorate_science_topics | laser_science | ||
Morrissey, FX, et al., "Efficient general method for numerically modeling laser pulse propagation, overlap, and lifetime effects in amplifiers" Opt. Express, v. 32, 35871-35887 (2024) | 2024 | directorate_science_topics | laser_science | ||
Benedetti, LR, et al., "Identifying, quantifying, and mitigating background with the time-resolved x-ray diffraction platform at the National Ignition Facility" Rev. Sci. Instrum., v. 95, 103524 (2024) | 2024 | nif_facility | diagnostics | direct_drive, planar, in-situ_diffraction | |
Khan, SF, et al., "Modifying x-ray streak cameras for operation on igniting fusion experiments" Rev. Sci. Instrum., v. 95, 103516 (2024) | 2024 | nif_facility | diagnostics | indirect_drive, convergent, hohlraum, icf, Diagnostic characterization | |
Peterson, AE, et al., "Improvements to the characterization of Agfa x-ray film for use on opacity spectroscopy diagnostics" Rev. Sci. Instrum., v. 95, 113502 (2024) | 2024 | nif_facility | diagnostics | ||
Armstrong, CD, et al., "Simultaneous co-axial multi-modal inspection using a laser driven x-ray and neutron source" Rev. Sci. Instrum., v. 95, 103102 (2024) | 2024 | nif_facility | diagnostics | ||
Pearcy, JA, et al., "Development of a compact magnetic spectrometer for use at the OMEGA Laser Facility and the National Ignition Facility" Rev. Sci. Instrum., v. 95, 103509 (2024) | 2024 | nif_facility | diagnostics | ||
Gates, JM, et al., "Toward the Discovery of New Elements: Production of Livermorium (Z=116) with 50 Ti" Phys. Rev. Lett., v. 133, 172502 (2024) | 2024 | other_research_topics | other_areas | ||
Harke, KJ, et al., "Quantifying motion blur by imaging shock front propagation with broadband and narrowband X-ray sources" Sci Rep, v. 14, 25580 (2024) | 2024 | other_research_topics | other_areas | ||
Labb, SA, et al., "Group hexavalent actinide separation from lanthanides using sodium bismuthate chromatography" J. Chromatogr. A, v. 1736, 465400 (2024) | 2024 | other_research_topics | other_areas | ||
Nyholm, PR, et al., "Electrical design of the flexible imaging diffraction diagnostic for laser experiments (FIDDLE) at the National Ignition Facility (NIF)-Requirements, design, and performance" Rev. Sci. Instrum., v. 95, 74711 (2024) | 2024 | directorate_science_topics | diagnostics | direct_drive, planar, in-situ_diffraction | |
Trosseille, C, et al., "Mitigation strategies for time-resolved x-ray diagnostic data degradation due to high neutron yield of ICF experiments at the NIF" Rev. Sci. Instrum., v. 95, 73514 (2024) | 2024 | directorate_science_topics | diagnostics | ||
Opachich, YP, et al., "Design and characterization of the time-resolved opacity spectrometer (OpSpecTR) for the NIF iron opacity campaign" Rev. Sci. Instrum., v. 95, 83513 (2024) | 2024 | directorate_science_topics | diagnostics | ||
Zeraouli, G, et al., "High repetition-rate dual-channel X-ray spectrometer for high-intensity laser-plasma experiments" Rev. Sci. Instrum., v. 95, 73102 (2024) | 2024 | directorate_science_topics | diagnostics | ||
Abu-Shawareb, H, et al., "Achievement of Target Gain Larger than Unity in an Inertial Fusion Experiment" Phys. Rev. Lett., v. 132, 65102 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Rubery, MS, et al., "Hohlraum Reheating from Burning NIF Implosions" Phys. Rev. Lett., v. 132, 65104 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Hurricane, OA, et al., "Energy Principles of Scientific Breakeven in an Inertial Fusion Experiment" Phys. Rev. Lett., v. 132, 65103 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Moore, AS, et al., "Diagnosing inertial confinement fusion ignition" Nucl. Fusion, v. 64, 106041 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, diag_char | |
Kritcher, AL, et al., "Design of the first fusion experiment to achieve target energy gain G > 1" Phys. Rev. E, v. 109, 25204 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Pak, A, et al., "Observations and properties of the first laboratory fusion experiment to exceed a target gain of unity" Phys. Rev. E, v. 109, 25203 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Chen, H, et al., "Understanding the deficiency in inertial confinement fusion hohlraum x-ray flux predictions using experiments at the National Ignition Facility" Phys. Rev. E, v. 110, L013201 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Srinivasan, A, et al., "Validation of implosion modeling through direct-drive shock timing experiments at the National Ignition Facility" Phys. Rev. E, v. 109, 45209 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Kritcher, AL, et al., "Design of first experiment to achieve fusion target gain > 1" Phys. Plasmas, v. 31, 70502 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Christopherson, AR, et al., "Design and analysis of dudded fuel experiments at the National Ignition Facility" Phys. Plasmas, v. 31, 72709 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Landen, OL, et al., "What next: Further implosion space exploration on the path to NIF extended yield capability" Phys. Plasmas, v. 31, 62712 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Hall, GN, et al., "Measurement of mix at the fuel-ablator interface in indirectly driven capsule implosions on the National Ignition Facility" Phys. Plasmas, v. 31, 22702 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, x-ray_radiography | |
Chen, H, et al., "Measurement of early time outer laser beam reflection inside a cylindrical hohlraum at the National Ignition Facility" Phys. Plasmas, v. 31, 62702 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Adrian, PJ, et al., "Diagnosing hot-spot symmetry in surrogate ignition experiments via secondary DT-neutron spectroscopy at the NIF" Phys. Plasmas, v. 31, 82704 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Strozzi, DJ, et al., "Design and modeling of indirectly driven magnetized implosions on the NIF" Phys. Plasmas, v. 31, 92703 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Ho, DDM, et al., "High-yield implosion modeling using the Frustraum: Assessing and controlling the formation of polar jets and enhancing implosion performance with applied magnetization" Phys. Plasmas, v. 31, 92701 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Valenzuela-Villaseca, V, et al., "X-ray imaging and electron temperature evolution in laser-driven magnetic reconnection experiments at the national ignition facility" Phys. Plasmas, v. 31, 82106 (2024) | 2024 | directorate_science_topics | icf_hed | direct_drive, planar, astrophysics | Plasma Physics |
Dewald, EL, et al., "Effects of drive pulse shape on graded metal pushered single shell capsule implosions on the National Ignition Facility" Phys. Plasmas, v. 31, 52702 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Clark, DS, et al., "Modeling ablator defects as a source of mix in high-performance implosions at the National Ignition Facility" Phys. Plasmas, v. 31, 62706 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Crilly, AJ, et al., "Measurements of dense fuel hydrodynamics in the NIF burning plasma experiments using backscattered neutron spectroscopy" Phys. Plasmas, v. 31, 42701 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, particle_spectroscopy | |
Kemp, AJ, et al., "Modeling stimulated Brillouin backscatter from outer-cone quads across multiple inertial confinement fusion hohlraum designs" Phys. Plasmas, v. 31, 42707 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, lpi | |
Marinak, MM, et al., "How numerical simulations helped to achieve breakeven on the NIF" Phys. Plasmas, v. 31, 70501 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Peterson, JL, et al., "Toward digital design at the exascale: An overview of project ICECap" Phys. Plasmas, v. 31, 62711 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Durocher, M, et al., "First look at neutron emission shape characteristics of ignition hotspots at the National Ignition Facility (invited)" Rev. Sci. Instrum., v. 95, 93530 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, particle_spectroscopy | |
Saavedra, G, et al., "Source localization for neutron imaging systems using convolutional neural networks" Rev. Sci. Instrum., v. 95, 63503 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Baker, KL, et al., "Frustraum 1100 experimental campaign on the national ignition facility" High Energy Density Phys., v. 53, 101158 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Maclaren, SA, et al., "Indirect drive ICF design study for a 3 MJ NIF enhanced yield capability" High Energy Density Phys., v. 52, 101134 (2024) | 2024 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf | |
Li, GJ, et al., "Microphysics of shock-grain interaction for inertial confinement fusion ablators in a fluid approach" Phys. Rev. E, v. 110, 35206 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Walsh, CA, et al., "Resistive diffusion in magnetized ICF implosions: Reduced magnetic stabilization of the Richtmyer-Meshkov instability" High Energy Density Phys., v. 51, 101103 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Hammel, BA, et al., "Machine learning assisted bayesian inference of mix and hot-spot conditions in NIF implosions" High Energy Density Phys., v. 50, 101077 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ralph, JE, et al., "The impact of low-mode symmetry on inertial fusion energy output in the burning plasma state" Nat. Commun., v. 15, 2975 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Farmer, WA, et al., "Impact of flow-induced beam deflection on beam propagation in ignition scale hohlraums" Phys. Plasmas, v. 31, 22705 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Gaffney, JA, et al., "Data-driven prediction of scaling and ignition of inertial confinement fusion experiments" Phys. Plasmas, v. 31, 92702 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Hurricane, OA, et al., "How ignition and target gain > 1 were achieved in inertial fusion" High Energy Density Phys., v. 53, 101157 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Olson, ML, et al., "Transformer-powered surrogates close the ICF simulation-experiment gap with extremely limited data" Mach. Learn.-Sci. Technol., v. 5, 25054 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Wang, J, et al., "A multifidelity Bayesian optimization method for inertial confinement fusion design" Phys. Plasmas, v. 31, 32706 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Belyaev, MA, et al., "Exact wave solver for nonparaxial laser beam propagation" Phys. Plasmas, v. 31, 53901 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Kunimune, JH, et al., "3D reconstruction of an inertial-confinement fusion implosion with neural networks using multiple heterogeneous data sources" Rev. Sci. Instrum., v. 95, 73506 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Hu, SX, et al., "A review on charged-particle transport modeling for laser direct-drive fusion" Phys. Plasmas, v. 31, 40501 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Rosen, MD, et al., "The long road to ignition: An eyewitness account" Phys. Plasmas, v. 31, 90501 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Barmore, LM, et al., "Phase Transition of Heptane under Pressure" J. Phys. Chem. C, v. 128, 2266-2270 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Gorman, MG, et al., "Shock compression experiments using the DiPOLE 100-X laser on the high energy density instrument at the European x-ray free electron laser: Quantitative structural analysis of liquid Sn" J. Appl. Phys., v. 135, 165902 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Krása, J, et al., "Ion emission from warm dense matter produced by irradiation with a soft x-ray free-electron laser" Matter Radiat. Extrem., v. 9, 16602 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Levitt, B, et al., "Elevated Electron Temperature Coincident with Observed Fusion Reactions in a Sheared-Flow-Stabilized Z Pinch" Phys. Rev. Lett., v. 132, 155101 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Goyon, C, et al., "Plasma pressure profiles in a sheared-flow-stabilized Z-pinch" Phys. Plasmas, v. 31, 72503 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Pan, X, et al., "Investigation on laser absorption and x-ray radiation in microstructured titanium targets heated by short-pulse relativistic laser pulses" Phys. Rev. Res., v. 6, 13025 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Carr, A, et al., "Morphology of Copper Nanofoams for Radiation Hydrodynamics and Fusion Applications Investigated by 3D Ptychotomography" Nano Lett., v. 24, 9916-9922 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Singh, S, et al., "Unexpected Observation of Disorder and Multiple Phase-Transition Pathways in Shock-Compressed Zr" Phys. Rev. Lett., v. 133, 96101 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Fletcher, LB, et al., "X-ray diffraction of metastable structures from supercooled liquid hydrogen" Sci Rep, v. 14, 17283 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Vlachos, C, et al., "Laser-driven quasi-static B-fields for magnetized high-energy-density experiments" Phys. Plasmas, v. 31, 32702 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ludwig, JD, et al., "Shock formation in flowing plasmas by temporally and spatially smoothed laser beams" Phys. Plasmas, v. 31, 32103 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ludwig, JD, et al., "Dynamic control of the spatial frequency content of an intense laser via intra-beam energy transfer" Phys. Plasmas, v. 31, 22101 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Barth, I, et al., "The Raman gap and collisional absorption" Phys. Plasmas, v. 31, 12109 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Kemp, AJ, et al., "Laser-to-proton conversion efficiency studies for proton fast ignition" Phys. Plasmas, v. 31, 42709 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Landen, OL, et al., "Thick-shell model of indirect-drive yield sensitivity" High Energy Density Phys., v. 52, 101101 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Cliche, DT, et al., "An improved methodology for modeling short pulse buried layer x-ray emission spectra" Comput. Phys. Commun., v. 300, 109168 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Nguyen-Cong, K, et al., "Extreme Metastability of Diamond and its Transformation to the BC8 Post-Diamond Phase of Carbon" J. Phys. Chem. Lett., v. 15, 1152-1160 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Dornheim, T, et al., "X-ray Thomson scattering absolute intensity from the f-sum rule in the imaginary-time domain" Sci Rep, v. 14, 14377 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Heighway, PG, et al., "Diffuse scattering from dynamically compressed single-crystal zirconium following the pressure-induced α → ω phase transition" Phys. Rev. B, v. 110, 54113 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Pokornik, M, et al., "A deep learning approach to fast analysis of collective Thomson scattering spectra" Phys. Plasmas, v. 31, 72115 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Chin, DA, et al., "Parametrized ion-distribution model for extended x-ray absorption fine-structure analysis at high-energy-density conditions" Phys. Plasmas, v. 31, 42708 (2024) | 2024 | directorate_science_topics | icf_hed | ||
London, RA, et al., "Radiation transfer in the spectra of short-pulse laser-heated targets" Phys. Plasmas, v. 31, 43303 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Higginson, DP, et al., "Staged Z-pinch radiation-hydrodynamic simulations on a 20-MA driver" Phys. Plasmas, v. 31, 32705 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Shipley, GA, et al., "Numerical study of implosion instability mitigation in magnetically driven solid liner dynamic screw pinches" Phys. Plasmas, v. 31, 22704 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Bell, AR, et al., "The fastVFP code for solution of the Vlasov-Fokker-Planck equation" Plasma Phys. Control. Fusion, v. 66, 35014 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Briard, A, et al., "The inviscid incompressible limit of Kelvin-Helmholtz instability for plasmas" Front. Physics, v. 12, 1383514 (2024) | 2024 | directorate_science_topics | icf_hed | Hydrodynamics | |
Bishel, DT, et al., "Toward constraint of ionization-potential depression models in a convergent geometry" High Energy Density Phys., v. 50, 101076 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Huff, MF, et al., "Sound speed and Grüneisen parameter up to three terapascal in shock-compressed iron" Phys. Rev. B, v. 109, 184311 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Gallardo-Diaz, E, et al., "First observations from the Kr multi-monochromatic x-ray imager for time and spatially resolved diagnosis of hot implosion cores" Phys. Plasmas, v. 31, 72701 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Schwemmlein, AK, et al., "A platform for planar dynamic compression of crystalline hydrogen toward the terapascal regime" Rev. Sci. Instrum., v. 95, 73901 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Griff-McMahon, J, et al., "Measurements of extended magnetic fields in laser-solid interaction" Phys. Rev. Res., v. 6, 33312 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Bailly-Grandvaux, M, et al., "Impact of strong magnetization in cylindrical plasma implosions with applied B-field measured via x-ray emission spectroscopy" Phys. Rev. Res., v. 6, L012018 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Tabak, G, et al., "Evidence for dissociation in shock-compressed methane" Phys. Rev. B, v. 109, 64102 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Horwitz, JAK, et al., "Nonplanar effects in simulations of laser-driven ejecta microjet experiments" AIP Adv., v. 14, 35119 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Campbell, PT, et al., "Formation of collisionless shocks driven by strongly magnetized relativistic electrons in the laboratory" Phys. Rev. Res., v. 6, L012016 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Tang, H, et al., "The influence of laser focusing conditions on the direct laser acceleration of electrons" New J. Phys., v. 26, 53010 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ebert, T, et al., "Silicon x-ray backlighter improvement by targets with spike-like microstructures" AIP Adv., v. 14, 35221 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Wicks, JK, et al., "B1-B2 transition in shock-compressed MgO" Sci. Adv., v. 10, eadk0306 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Poole, H, et al., "Multimessenger measurements of the static structure of shock-compressed liquid silicon at 100 GPa" Phys. Rev. Res., v. 6, 23144 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ye, ZX, et al., "Shock equation of state experiments in MgO up to 1.5 TPa and the effects of optical depth on temperature determination" J. Appl. Phys., v. 136, 105904 (2024) | 2024 | directorate_science_topics | icf_hed | ||
King, M, et al., "Geometry effects on energy selective focusing of laser-driven protons with open and closed hemisphere-cone targets" Plasma Phys. Control. Fusion, v. 66, 15001 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Rusby, DR, et al., "Review and meta-analysis of electron temperatures from high-intensity laser-solid interactions" Phys. Plasmas, v. 31, 40503 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Wong, CS, et al., "Robust unfolding of MeV x-ray spectra from filter stack spectrometer data" Rev. Sci. Instrum., v. 95, 23301 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Lemos, N, et al., "Ultrabroad-band x-ray source using a picosecond, laser-driven plasma accelerator" Phys. Rev. Res., v. 6, L032022 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ofori-Okai, BK, et al., "DC electrical conductivity measurements of warm dense matter using ultrafast THz radiation" Phys. Plasmas, v. 31, 42711 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Sawada, H, et al., "Spatiotemporal dynamics of fast electron heating in solid-density matter via XFEL" Nat. Commun., v. 15, 7528 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Ampleford, DJ, et al., "Controlling morphology and improving reproducibility of magnetized liner inertial fusion experiments" Phys. Plasmas, v. 31, 22703 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Harvey-Thompson, AJ, et al., "Development of a high performance MagLIF target platform using high aspect ratio coated liners and low-mix laser preheat" Phys. Plasmas, v. 31, 72711 (2024) | 2024 | directorate_science_topics | icf_hed | ||
Grim, GP, et al., "Time-of-flight vs time-of-arrival in neutron spectroscopic measurements for high energy density plasmas" Rev. Sci. Instrum., v. 95, 83519 (2024) | 2024 | directorate_science_topics | icf_hed | ||
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Chen, H, et al., "Advancing the capability of the gated laser-entrance-hole imager on the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10G103 (2018) | 2018 | nif_facility | diagnostics | hohlraum, indirect_drive | |
Hatarik, R, et al., "Using multiple neutron time of flight detectors to determine the hot spot velocity" Rev. Sci. Instrum., v. 89, 10I138 (2018) | 2018 | nif_facility | diagnostics | hohlraum, indirect_drive, icf, convergent | |
Hartouni, EP, et al., "Uncertainty analysis of response functions and gamma-backgrounds on T-ion and t(0) measurements from Cherenkov neutron detectors at the National Ignition Facility (NIF)" Rev. Sci. Instrum., v. 89, 10I140 (2018) | 2018 | nif_facility | diagnostics | icf | |
Benedetti, LR, et al., "Using multiple x-ray emission images of inertially confined implosions to identify spatial variations and estimate confinement volumes (invited)" Rev. Sci. Instrum., v. 89, 10G105 (2018) | 2018 | nif_facility | diagnostics | icf, convergent | |
Bishel, DT, et al., "Using time-resolved penumbral imaging to measure low hot spot x-ray emission signals from capsule implosions at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10G111 (2018) | 2018 | nif_facility | diagnostics | icf, convergent | |
Rinderknecht, HG, et al., "Velocity correction for neutron activation diagnostics at the NIF" Rev. Sci. Instrum., v. 89, 10I125 (2018) | 2018 | nif_facility | diagnostics | icf, convergent | |
Dewald, EL, et al., "X-ray streaked refraction enhanced radiography for inferring inflight density gradients in ICF capsule implosions" Rev. Sci. Instrum., v. 89, 10G108 (2018) | 2018 | nif_facility | diagnostics | icf, convergent, x-ray_radiography | |
Khan, SF, et al., "Implementing time resolved electron temperature capability at the NIF using a streak camera" Rev. Sci. Instrum., v. 89, 10K117 (2018) | 2018 | nif_facility | diagnostics | icf, spectroscopy | |
Herrmann, HW, et al., "Progress on next generation gamma-ray Cherenkov detectors for the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10I148 (2018) | 2018 | nif_facility | diagnostics | icf, spectroscopy | |
Izumi, N, et al., "Simultaneous visualization of wall motion, beam propagation, and implosion symmetry on the National Ignition Facility (invited)" Rev. Sci. Instrum., v. 89, 10K111 (2018) | 2018 | nif_facility | diagnostics | Indirect_drive, convergent, icf | |
Parker, CE, et al., "Implementation of the foil-on-hohlraum technique for the magnetic recoil spectrometer for time-resolved neutron measurements at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 113508 (2018) | 2018 | nif_facility | diagnostics | indirect_drive, hohlraum, icf | |
Despotopulos, JD, et al., "Distribution of collected target debris using the large area solid debris radiochemistry collector" Rev. Sci. Instrum., v. 89, 10I133 (2018) | 2018 | nif_facility | diagnostics | indirect_drive, hohlraum, nuclear_science | |
Goyon, C, et al., "Time resolved detection of two-plasmon decay using three-halves harmonic emission on the National Ignition Facility" Rev. Sci. Instrum., v. 89, 083504 (2018) | 2018 | nif_facility | diagnostics | lpi | |
King, JA, et al., "Implementation of a 1-2 keV point-projection x-ray spectrometer on the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10F101 (2018) | 2018 | nif_facility | diagnostics | spectroscopy | |
Krygier, A, et al., "Developing a high-flux, high-energy continuum backlighter for extended x-ray absorption fine structure measurements at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10F114 (2018) | 2018 | nif_facility | diagnostics | spectroscopy, x-ray_conversion, exafs | |
Huntington, CM, et al., "Bremsstrahlung x-ray generation for high optical depth radiography applications on the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10G121 (2018) | 2018 | nif_facility | diagnostics | x-ray_radiography | |
Schlossberg, DJ, et al., "Ab initio response functions for Cherenkov-based neutron detectors" Rev. Sci. Instrum., v. 89, 10I136 (2018) | 2018 | nif_facility | diagnostics | ||
Geppert-Kleinrath, H, et al., "Pulse dilation gas Cherenkov detector for ultra-fast gamma reaction history at the NIF (invited)" Rev. Sci. Instrum., v. 89, 10I146 (2018) | 2018 | nif_facility | diagnostics | ||
Baker, KL, et al., "Solid-state framing camera operating in interferometric mode" Rev. Sci. Instrum., v. 89, 10G107 (2018) | 2018 | nif_facility | diagnostics | ||
Mariscal, D, et al., "Calibration of proton dispersion for the NIF electron positron proton spectrometer (NEPPS) for short-pulse laser experiments on the NIF ARC" Rev. Sci. Instrum., v. 89, 10I145 (2018) | 2018 | nif_facility | diagnostics | Plasma Physics | |
LeFevre, HJ, et al., "A platform for x-ray Thomson scattering measurements of radiation hydrodynamics experiments on the NIF" Rev. Sci. Instrum., v. 89, 10F105 (2018) | 2018 | nif_facility | diagnostics | Hydrodynamics | |
Thorn, DB, et al., "X-ray spectrometer throughput model for (selected) flat Bragg crystal spectrometers on laser plasma facilities" Rev. Sci. Instrum., v. 89, 10F119 (2018) | 2018 | nif_facility | diagnostics | ||
Bitter, M, et al., "A new toroidal x-ray crystal spectrometer for the diagnosis of high energy density plasmas at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10F118 (2018) | 2018 | nif_facility | diagnostics | ||
Fatherley, VE, et al., "Aperture design for the third neutron and first gamma-ray imaging systems for the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10I127 (2018) | 2018 | nif_facility | diagnostics | ||
Gales, SG, et al., "Characterisation of a sub-20 ps temporal resolution pulse dilation photomultiplier tube" Rev. Sci. Instrum., v. 89, 063506 (2018) | 2018 | nif_facility | diagnostics | ||
Gao, L, et al., "Absolute calibration of a time-resolved high resolution x-ray spectrometer for the National Ignition Facility (invited)" Rev. Sci. Instrum., v. 89, 10F125 (2018) | 2018 | nif_facility | diagnostics | ||
Gordon, JM, et al., "Characterization of photodetector temporal response for neutron time-of-flight (nToF) diagnostics at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10I135 (2018) | 2018 | nif_facility | diagnostics | ||
Dymoke-Bradshaw, AKL, et al., "Development of an ultra-fast photomultiplier tube for gamma-ray Cherenkov detectors at the National Ignition Facility (PD-PMT) " Rev. Sci. Instrum., v. 89, 10I137 (2018) | 2018 | nif_facility | diagnostics | ||
Trosseille, CA, et al., "Investigating the relationship between noise transfer inside the x-ray framing cameras and their imaging ability" Rev. Sci. Instrum., v. 89, 10G109 (2018) | 2018 | nif_facility | diagnostics | ||
Holder, JP, et al., "On the system stability and calibration of the image plate/scanner system for plasma diagnosis at the National Ignition Facility" Rev. Sci. Instrum., v. 89, 10F123 (2018) | 2018 | nif_facility | diagnostics | ||
Engelhorn, K, et al., "Sub-nanosecond single line-of-sight (SLOS) x-ray imagers (invited)" Rev. Sci. Instrum., v. 89, 10G123 (2018) | 2018 | nif_facility | diagnostics | ||
Hell, N, et al., "Experimental comparison of spherically bent HAPG and Ge crystals" Rev. Sci. Instrum., v. 89, 10F121 (2018) | 2018 | nif_facility | diagnostics | ||
Zastrau, U, et al., "A sensitive EUV Schwarzschild microscope for plasma studies with sub-micrometer resolution" Rev. Sci. Instrum., v. 89, 023703 (2018) | 2018 | nif_facility | diagnostics | ||
McGuffey, C, et al., "Soft X-ray backlighter source driven by a short-pulse laser for pump-probe characterization of warm dense matter" Rev. Sci. Instrum., v. 89, 10F122 (2018) | 2018 | nif_facility | diagnostics | ||
Vaughan, JD, et al., "Modeling the one-dimensional imager of neutrons (ODIN) for neutron response functions at the Sandia Z facility" Rev. Sci. Instrum., v. 89, 10I121 (2018) | 2018 | nif_facility | diagnostics | ||
MacDonald, MJ, et al., "Developing a long-duration Zn K-alpha source for x-ray scattering experiments" Rev. Sci. Instrum., v. 89, 10F109 (2018) | 2018 | nif_facility | diagnostics | ||
Rubery, MS, et al., "First measurements of remaining shell areal density on the OMEGA laser using the Diagnostic for Areal Density (DAD)" Rev. Sci. Instrum., v. 89, 083510 (2018) | 2018 | nif_facility | diagnostics | ||
Glebov, VY, et al., "Testing a Cherenkov neutron time-of-flight detector on OMEGA" Rev. Sci. Instrum., v. 89, 10I122 (2018) | 2018 | nif_facility | diagnostics | ||
Theobald, W, et al., "The single-line-of-sight, time-resolved x-ray imager diagnostic on OMEGA" Rev. Sci. Instrum., v. 89, 10G117 (2018) | 2018 | nif_facility | diagnostics | ||
Gumbrell, E, et al., "Characterizing the modulation transfer function for X-ray radiography in high energy density experiments" Rev. Sci. Instrum., v. 89, 10G118 (2018) | 2018 | nif_facility | diagnostics | ||
Kozioziemski, BJ, et al., "An x-ray optic calibration facility for high energy density diagnostics" Rev. Sci. Instrum., v. 89, 10G112 (2018) | 2018 | nif_facility | diagnostics | ||
Ampleford, DJ, et al., "One dimensional imager of neutrons on the Z machine" Rev. Sci. Instrum., v. 89, 10I132 (2018) | 2018 | nif_facility | diagnostics | ||
Marley, EV, et al., "Using L-shell x-ray spectra to determine conditions of non-local thermal dynamic equilibrium plasmas" Rev. Sci. Instrum., v. 89, 10F106 (2018) | 2018 | nif_facility | diagnostics | ||
Do, A, et al., "Characterization of a two-channel, high resolution hard x-ray microscope using Fresnel zone plates for laser-plasma interaction experiments" Rev. Sci. Instrum., v. 89, 10G122 (2018) | 2018 | nif_facility | diagnostics | ||
Williams, GJ, et al., "High-energy differential-filtering photon spectrometer for ultraintense laser-matter interactions" Rev. Sci. Instrum., v. 89, 10F116 (2018) | 2018 | nif_facility | diagnostics | ||
Beiersdorfer, P, et al., "High resolution, high signal-to-noise crystal spectrometer for measurements of line shifts in high-density plasmas" Rev. Sci. Instrum., v. 89, 10F120 (2018) | 2018 | nif_facility | diagnostics | ||
Wu, M, et al., "Characterization and calibration of a multilayer coated Wolter optic for an imager on the Z-machine at Sandia National Laboratories" Rev. Sci. Instrum., v. 89, 10G114 (2018) | 2018 | nif_facility | diagnostics | ||
Vogel, JK, et al., "Design and raytrace simulations of a multilayer-coated Wolter x-ray optic for the Z machine at Sandia National Laboratories" Rev. Sci. Instrum., v. 89, 10G113 (2018) | 2018 | nif_facility | diagnostics | ||
Fein, JR, et al., "A Wolter imager on the Z machine to diagnose warm x-ray sources" Rev. Sci. Instrum., v. 89, 10G115 (2018) | 2018 | nif_facility | diagnostics | ||
Khater, H, et al., "Simulation of the Post-Shot Radiation Environment in the National Ignition Facility" Fusion Sci. Technol., v. 74, 387-405 (2018) | 2018 | nif_facility | operations_and_controls | ||
Laurence, TA, et al., "Laser-induced modifications of HfO2 coatings using picosecond pulses at 1053 nm: Using polarization to isolate surface defects" J. Appl. Phys., v. 124, 083102 (2018) | 2018 | nif_facility | optics | ||
Baxamusa, S, et al., "Acoustic activation of water-in-oil microemulsions for controlled salt dissolution" J. Colloid. Interf. Sci., v. 529, 366-374 (2018) | 2018 | nif_facility | optics | ||
Bhandarkar, S, et al., "Prevention of Residual Gas Condensation on the Laser Entry Hole Windows on Cryogenic NIF Targets Using a Protective Warm Film" Fusion Sci. Technol., v. 73, 380-391 (2018) | 2018 | nif_facility | target_fabrication | hohlraum, icf | |
Harding, DR, et al., "Properties of vapor-deposited and solution-processed targets for laser-driven inertial confinement fusion experiments" Matter Radiat. Extrem., v. 3, 312-321 (2018) | 2018 | nif_facility | target_fabrication | ||
Cardenas, T, et al., "Design and Fabrication of Opacity Targets for the National Ignition Facility" Fusion Sci. Technol., v. 73, 458-466 (2018) | 2018 | nif_facility | target_fabrication | ||
Wittman, MD, et al., "Effect of Tritium-Induced Damage on Plastic Targets from High-Density DT Permeation" Fusion Sci. Technol., v. 73, 315-323 (2018) | 2018 | nif_facility | target_fabrication | ||
Horwood, C, et al., "Metal Alloy ICF Capsules Created by Electrodeposition" Fusion Sci. Technol., v. 73, 335-343 (2018) | 2018 | nif_facility | target_fabrication | ||
Horwood, C, et al., "Platinum Electrodeposition for Supported ALD Templated Foam Hohlraum Liners" Fusion Sci. Technol., v. 73, 219-228 (2018) | 2018 | nif_facility | target_fabrication | ||
Jaquez, JS, et al., "Process Developments in the Fabrication of Depleted Uranium Hohlraums" Fusion Sci. Technol., v. 73, 370-379 (2018) | 2018 | nif_facility | target_fabrication | ||
Xu, H, et al., "Progress in Developing Novel Double-Shell Metal Targets Via Magnetron Sputtering" Fusion Sci. Technol., v. 73, 354-362 (2018) | 2018 | nif_facility | target_fabrication | ||
Walters, C, et al., "D-2 and D-T Liquid-Layer Target Shots at the National Ignition Facility" Fusion Sci. Technol., v. 73, 305-314 (2018) | 2018 | nif_facility | target_fabrication | ||
Haan, SW, et al., "Update 2017 on Target Fabrication Requirements for High-Performance NIF Implosion Experiments" Fusion Sci. Technol., v. 73, 83-88 (2018) | 2018 | nif_facility | target_fabrication | ||
Cardenas, T, et al., "Progress Toward Fabrication of Machined Metal Shells for the First Double-Shell Implosions at the National Ignition Facility" Fusion Sci. Technol., v. 73, 344-353 (2018) | 2018 | nif_facility | target_fabrication | ||
Rice, N, et al., "Capsule Shimming Developments for National Ignition Facility (NIF) Hohlraum Asymmetry Experiments" Fusion Sci. Technol., v. 73, 279-284 (2018) | 2018 | nif_facility | target_fabrication | ||
Stadermann, M, et al., "Evaluation of Polyimide/Carbon Composite Films for Capsule Support" Fusion Sci. Technol., v. 73, 273-278 (2018) | 2018 | nif_facility | target_fabrication | ||
Bhandarkar, S, et al., "Fabrication of Low-Density Foam Liners in Hohlraums for NIF Targets" Fusion Sci. Technol., v. 73, 194-209 (2018) | 2018 | nif_facility | target_fabrication | ||
Shin, SJ, et al., "Ion Implantation Doping of Inertial Confinement Fusion Targets" Fusion Sci. Technol., v. 73, 467-473 (2018) | 2018 | nif_facility | target_fabrication | ||
Crippen, JW, et al., "Novel Capsule Fill Tube Assemblies for the Hydrodynamic Growth Radiography Targets" Fusion Sci. Technol., v. 73, 285-292 (2018) | 2018 | nif_facility | target_fabrication | ||
Braun, T, et al., "Supercritical Drying of Wet Gel Layers Generated Inside ICF Ablator Shells" Fusion Sci. Technol., v. 73, 229-236 (2018) | 2018 | nif_facility | target_fabrication | ||
Fitzsimmons, P, et al., "Zinc Oxide-Coated Poly(HIPE) Annular Liners to Advance Laser Indirect Drive Inertial Confinement Fusion" Fusion Sci. Technol., v. 73, 210-218 (2018) | 2018 | nif_facility | target_fabrication | ||
Zepeda-Ruiz, LA, et al., "Effect of wetting on nucleation and growth of D-2 in confinement" J. Chem. Phys., v. 148, 134708 (2018) | 2018 | nif_facility | target_fabrication | ||
Kim, SH, et al., "A simple, highly efficient route to electroless gold plating on complex 3D printed polyacrylate plastics" Chem. Commun., v. 54, 10463-10466 (2018) | 2018 | nif_facility | target_fabrication | ||
Kucheyev, SO, et al., "Freezing Hydrogen in Nanoconfinement" Fusion Sci. Technol., v. 73, 293-297 (2018) | 2018 | nif_facility | target_fabrication | ||
Shin, SJ, et al., "Materials and Morphology Study for Templated Hydrogen Solidification" Fusion Sci. Technol., v. 73, 298-304 (2018) | 2018 | nif_facility | target_fabrication | ||
Patterson, BM, et al., "Quantitative Analysis of Ultralow-Density Materials Using Laboratory-Based Quasi-Monochromatic Radiography" Fusion Sci. Technol., v. 73, 173-182 (2018) | 2018 | nif_facility | target_fabrication | ||
Lepro, X, et al., "Enhancing the Oxidation Stability of Polydivinylbenzene Films via Residual Pendant Vinyl Passivation" ChemistrySelect, v. 3, 500-506 (2018) | 2018 | nif_facility | target_fabrication | ||
Reusch, JA, et al., "Non-inductively driven tokamak plasmas at near-unity beta(t) in the PEGASUS toroidal experiment" Phys. Plasmas, v. 25, 056101 (2018) | 2018 | other_research_topics | other_areas | ||
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Lakosi, L, et al., "Gamma spectrometry in the ITWG CMX-4 exercise" J. Radioanal. Nucl. Ch., v. 315, 409-416 (2018) | 2018 | other_research_topics | other_areas | ||
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Chen, H, et al., "On krypton-doped capsule implosion experiments at the National Ignition Facility" Phys. Plasmas, v. 24, 072715 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
Nagel, SR, et al., "A platform for studying the Rayleigh-Taylor and Richtmyer-Meshkov instabilities in a planar geometry at high energy density at the National Ignition Facility" Phys. Plasmas, v. 24, 072704 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf, hydrodynamics | |
Perry, TS, et al., "Replicating the Z iron opacity experiments on the NIF" High Energ. Dens. Phys., v. 23, 223-227 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, spectroscopy, astrophysics, eos | |
Haines, BM, et al., "The effects of convergence ratio on the implosion behavior of DT layered inertial confinement fusion capsules" Phys. Plasmas, v. 24, 072709 (2017) | 2017 | directorate_science_topics | icf_hed | ||
Gooden, ME, et al., "Measurement of the Bi-209(n,4n)Bi-206 and Tm-169(n,3n)Tm-167 cross sections between 23.5 and 30.5 MeV relevant to reaction-in-flight neutron studies at the National Ignition Facility" Phys. Rev. C, v. 96, 024622 (2017) | 2017 | directorate_science_topics | icf_hed | ||
Zhao, ST, et al., "Generating gradient germanium nanostructures by shock-induced amorphization and crystallization" P. Natl. Acad. Sci. USA, v. 114, 9791-9796 (2017) | 2017 | directorate_science_topics | icf_hed | ||
Suzuki-Vidal, F, et al., "Counterpropagating Radiative Shock Experiments on the Orion Laser" Phys. Rev. Lett., v. 119, 055001 (2017) | 2017 | directorate_science_topics | icf_hed | ||
Matthews, MJ, et al., "Diode-based additive manufacturing of metals using an optically-addressable light valve" Opt. Express, v. 25, 11788-11800 (2017) | 2017 | directorate_science_topics | laser_science | ||
Mariella, R, et al., "Laser-driven hydrothermal process studied with excimer laser pulses" J. Appl. Phys., v. 122, 075104 (2017) | 2017 | directorate_science_topics | laser_science | ||
Coppari, F, et al., "X-ray source development for EXAFS measurements on the National Ignition Facility" Rev. Sci. Instrum., v. 88, 083907 (2017) | 2017 | nif_facility | diagnostics | direct_drive, sphere, exafs | |
Patankar, S, et al., "Absolute calibration of optical streak cameras on picosecond time scales using supercontinuum generation" Appl. Optics, v. 56, 6982-6987 (2017) | 2017 | nif_facility | diagnostics | ||
Bude, J, et al., "Particle damage sources for fused silica optics and their mitigation on high energy laser systems" Opt. Express, v. 25, 11414-11435 (2017) | 2017 | nif_facility | optics | ||
Ross, JS, et al., "Transition from Collisional to Collisionless Regimes in Interpenetrating Plasma Flows on the National Ignition Facility" Phys. Rev. Lett., v. 118, 185003 (2017) | 2017 | directorate_science_topics | icf_hed | direct_drive, planar, astrophysics, proton_radiography | Plasma Physics |
Casey, DT, et al., "Thermonuclear reactions probed at stellar-core conditions with laser-based inertial-confinement fusion" Nat. Phys., v. 13, 1227-1231 (2017) | 2017 | directorate_science_topics | icf_hed | icf, direct_drive, nuclear_science | |
Martinez, DA, et al., "Hydro-instability growth of perturbation seeds from alternate capsule-support strategies in indirect-drive implosions on National Ignition Facility" Phys. Plasmas, v. 24, 102707 (2017) | 2017 | directorate_science_topics | icf_hed | icf, indirect_drive, hydrodynamics, hohlraum | |
Hurricane, OA, et al., "On the importance of minimizing "coast-time" in x-ray driven inertially confined fusion implosions" Phys. Plasmas, v. 24, 092706 (2017) | 2017 | directorate_science_topics | icf_hed | icf, indirect_drive, hydrodynamics, hohlraum | |
Wilson, DC, et al., "Use of (41) Ar production to measure ablator areal density in NIF beryllium implosions" Phys. Plasmas, v. 24, 022701 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, cona | |
Divol, L, et al., "Symmetry control of an indirectly driven high-density-carbon implosion at high convergence and high velocity" Phys. Plasmas, v. 24, 056309 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, hydrodynamics | |
Ma, T, et al., "The role of hot spot mix in the low-foot and high-foot implosions on the NIF" Phys. Plasmas, v. 24, 056311 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, hydrodynamics | |
Farmer, WA, et al., "Simulation of self-generated magnetic fields in an inertial fusion hohlraum environment" Phys. Plasmas, v. 24, 052703 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, lpi | |
Hall, GN, et al., "The relationship between gas fill density and hohlraum drive performance at the National Ignition Facility" Phys. Plasmas, v. 24, 052706 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, lpi | |
Smalyuk, VA, et al., "Mix and hydrodynamic instabilities on NIF" J. Instrum., v. 12, C06001 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, convergent, hohlraum, icf, x-ray_radiography | |
MacPhee, AG, et al., "X-ray shadow imprint of hydrodynamic instabilities on the surface of inertial confinement fusion capsules by the fuel fill tube" Phys. Rev. E, v. 95, 031204 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, half_hohlraum, hydrodynamics, x-ray_radiography | |
Meezan, NB, et al., "Indirect drive ignition at the National Ignition Facility" Plasma Phys. Contr. F., v. 59, 014021 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
Clark, DS, et al., "Capsule modeling of high foot implosion experiments on the National Ignition Facility" Plasma Phys. Contr. F., v. 59, 055006 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
Simakov, AN, et al., "Performance of beryllium targets with full-scale capsules in low-fill 6.72-mm hohlraums on the National Ignition Facility" Phys. Plasmas, v. 24, 052704 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
Weber, CR, et al., "Improving ICF implosion performance with alternative capsule supports" Phys. Plasmas, v. 24, 056302 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
Munro, DH, et al., "Impact of temperature-velocity distribution on fusion neutron peak shape" Phys. Plasmas, v. 24, 056301 (2017) | 2017 | directorate_science_topics | icf_hed | indirect_drive, hohlraum, icf | |
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Doppner, T, et al., "eHXI: a permanently installed, hard x-ray imager for the National Ignition Facility" J. Instrum., v. 11, P06010 (2016) | 2016 | nif_facility | diagnostics | indirect_drive, icf | |
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Ratkiewicz, A, et al., "A recoverable gas-cell diagnostic for the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D825 (2016) | 2016 | nif_facility | diagnostics | nuclear_science | Nuclear Physics |
Gharibyan, N, et al., "Recent advances and results from the solid radiochemistry nuclear diagnostic at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D813 (2016) | 2016 | nif_facility | diagnostics | nuclear_science | |
Yeamans, CB, et al., "A neutron activation spectrometer and neutronic experimental platform for the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D702 (2016) | 2016 | nif_facility | diagnostics | nuclear_science | |
Edwards, ER, et al., "Determination of relative krypton fission product yields from 14 MeV neutron induced fission of U-238 at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D838 (2016) | 2016 | nif_facility | diagnostics | nuclear_science | |
Zylstra, AB, et al., "Proton pinhole imaging on the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E704 (2016) | 2016 | nif_facility | diagnostics | proton_radiography, astrophysics | Plasma Physics |
Sutcliffe, GD, et al., "A novel method to recover DD fusion proton CR-39 data corrupted by fast ablator ions at OMEGA and the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D812 (2016) | 2016 | nif_facility | diagnostics | proton_radiography, astrophysics | Plasma Physics |
Pickworth, LA, et al., "The National Ignition Facility modular Kirkpatrick-Baez microscope" Rev. Sci. Instrum., v. 87, 11E316 (2016) | 2016 | nif_facility | diagnostics | radiography | |
Izumi, N, et al., "Observation of hohlraum-wall motion with spectrally selective x-ray imaging at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E321 (2016) | 2016 | nif_facility | diagnostics | spectroscopy | |
Benedetti, LR, et al., "Advances in x-ray framing cameras at the National Ignition Facility to improve quantitative precision in x-ray imaging" Rev. Sci. Instrum., v. 87, 023511 (2016) | 2016 | nif_facility | diagnostics | spectroscopy | |
Moore, AS, et al., "Two-color spatial and temporal temperature measurements using a streaked soft x-ray imager" Rev. Sci. Instrum., v. 87, 11E313 (2016) | 2016 | nif_facility | diagnostics | spectroscopy | |
Ma, T, et al., "Development of a krypton-doped gas symmetry capsule platform for x-ray spectroscopy of implosion cores on the NIF" Rev. Sci. Instrum., v. 87, 11E327 (2016) | 2016 | nif_facility | diagnostics | spectroscopy, icf | |
Doppner, T, et al., "Improving a high-efficiency, gated spectrometer for x-ray Thomson scattering experiments at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E515 (2016) | 2016 | nif_facility | diagnostics | xrts | EOS/Material Science |
Hall, GN, et al., "Spatial resolution measurements of the advanced radiographic capability x-ray imaging system at energies relevant to Compton radiography" Rev. Sci. Instrum., v. 87, 11E310 (2016) | 2016 | nif_facility | diagnostics | ||
Haugh, MJ, et al., "Measuring the diffraction properties of an imaging quartz(211) crystal" Rev. Sci. Instrum., v. 87, 063103 (2016) | 2016 | nif_facility | diagnostics | ||
Wink, CW, et al., "Signal and background considerations for the MRSt on the National Ignition Facility (NIF)" Rev. Sci. Instrum., v. 87, 11D808 (2016) | 2016 | nif_facility | diagnostics | ||
Casey, DT, et al., "Fluence-compensated down-scattered neutron imaging using the neutron imaging system at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E715 (2016) | 2016 | nif_facility | diagnostics | ||
Swadling, GF, et al., "Design calculations for a xenon plasma x-ray shield to protect the NIF optical Thomson scattering diagnostic" Rev. Sci. Instrum., v. 87, 11D603 (2016) | 2016 | nif_facility | diagnostics | ||
Hill, KW, et al., "Development of a high resolution x-ray spectrometer for the National Ignition Facility (NIF)" Rev. Sci. Instrum., v. 87, 11E344 (2016) | 2016 | nif_facility | diagnostics | ||
Jarrott, LC, et al., "Hotspot electron temperature from x-ray continuum measurements on the NIF" Rev. Sci. Instrum., v. 87, 11E534 (2016) | 2016 | nif_facility | diagnostics | ||
Ross, JS, et al., "Simulated performance of the optical Thomson scattering diagnostic designed for the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E510 (2016) | 2016 | nif_facility | diagnostics | ||
Datte, PS, et al., "The design of the optical Thomson scattering diagnostic for the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E549 (2016) | 2016 | nif_facility | diagnostics | ||
Fatherley, VE, et al., "Design of the polar neutron-imaging aperture for use at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D821 (2016) | 2016 | nif_facility | diagnostics | ||
Fournier, KB, et al., "X-ray transport and radiation response assessment (XTRRA) experiments at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D421 (2016) | 2016 | nif_facility | diagnostics | ||
Kilkenny, JD, et al., "The National Ignition Facility Diagnostic Set at the Completion of the National Ignition Campaign, September 2012" Fusion Sci. Technol., v. 69, 420-451 (2016) | 2016 | nif_facility | diagnostics | ||
Herrmann, HW, et al., "Next generation gamma-ray Cherenkov detectors for the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11E732 (2016) | 2016 | nif_facility | diagnostics | ||
Jaquez, J, et al., "Fabrication, Characterization, and Modeling of Comixed Films for NXS Calibration Targets" Fusion Sci. Technol., v. 70, 358-364 (2016) | 2016 | nif_facility | diagnostics | ||
MacPhee, AG, et al., "Improving the off-axis spatial resolution and dynamic range of the NIF X-ray streak cameras (invited)" Rev. Sci. Instrum., v. 87, 11E202 (2016) | 2016 | nif_facility | diagnostics | ||
Frenje, JA, et al., "The magnetic recoil spectrometer (MRSt) for time-resolved measurements of the neutron spectrum at the National Ignition Facility (NIF)" Rev. Sci. Instrum., v. 87, 11D806 (2016) | 2016 | nif_facility | diagnostics | ||
Ross, PW, et al., "Design of the opacity spectrometer for opacity measurements at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D623 (2016) | 2016 | nif_facility | diagnostics | ||
Haugh, MJ, et al., "A technique for measuring the quality of an elliptically bent pentaerythritol [PET(002)] crystal" Rev. Sci. Instrum., v. 87, 11D612 (2016) | 2016 | nif_facility | diagnostics | ||
Sayre, DB, et al., "Calibration of scintillation-light filters for neutron time-of-flight spectrometers at the National Ignition Facility" Rev. Sci. Instrum., v. 87, 11D802 (2016) | 2016 | nif_facility | diagnostics | ||
Datte, PS, et al., "Impulse responses of visible phototubes used in National Ignition Facility neutron time of flight diagnostics" Rev. Sci. Instrum., v. 87, 11D837 (2016) | 2016 | nif_facility | diagnostics | ||
Opachich, YP, et al., "Structured photocathodes for improved high-energy x-ray efficiency in streak cameras" Rev. Sci. Instrum., v. 87, 11E331 (2016) | 2016 | nif_facility | diagnostics | ||
Holder, JP, et al., "Characterization of x-ray framing cameras for the National Ignition Facility using single photon pulse height analysis" Rev. Sci. Instrum., v. 87, 11D618 (2016) | 2016 | nif_facility | diagnostics | ||
Park, J, et al., "The implementation and data analysis of an interferometer for intense short pulse laser experiments" High Power Laser Sci., v. 4, e26 (2016) | 2016 | nif_facility | diagnostics | ||
Rasmus, AM, et al., "Detailed characterization of the LLNL imaging proton spectrometer" Rev. Sci. Instrum., v. 87, 11D831 (2016) | 2016 | nif_facility | diagnostics | ||
Saunders, AM, et al., "X-ray Thomson scattering measurements from hohlraum-driven spheres on the OMEGA laser" Rev. Sci. Instrum., v. 87, 11E724 (2016) | 2016 | nif_facility | diagnostics | ||
Beiersdorfer, P, et al., "Lineshape spectroscopy with a very high resolution, very high signal-to-noise crystal spectrometer" Rev. Sci. Instrum., v. 87, 063501 (2016) | 2016 | nif_facility | diagnostics | ||
Maddox, BR, et al., "Single-pulse x-ray diffraction using polycapillary optics for in situ dynamic diffraction" Rev. Sci. Instrum., v. 87, 083901 (2016) | 2016 | nif_facility | diagnostics | ||
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