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Physical Review Letters
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May 27, 2014
First measurements of hydrodynamic instability growth in indirectly driven implosions at ignition-relevant conditions on the National Ignition Facility
V A Smalyuk, D T Casey, D S Clark, et al.
Physical Review Letters
|
April 28, 2020
Impact of Localized Radiative Loss on Inertial Confinement Fusion Implosions
A Pak, L Divol, C R Weber, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
August 15, 2014
Reduced instability growth with high-adiabat high-foot implosions at the National Ignition Facility
D T Casey, V A Smalyuk, K S Raman, et al.
Physical Review. E
|
November 18, 2025
Effect on compression of lowering the design adiabat in the SQ-n campaign
K L Baker, D T Casey, D S Clark, et al.
Physical Review Letters
|
August 27, 2025
Direct Experimental Proof of the Principal Role of Reduced High-Mode Hydrodynamic Mix in Recent Ignition Success on NIF
B Bachmann, L Divol, A Pak, et al.
The Review of Scientific Instruments
|
January 6, 2025
Ultra-fast single-crystal CVD diamonds in the particle time-of-flight (PTOF) detector for low yield burn-history measurements on the NIF (invited)
B L Reichelt, R Kishimori, Y Lawrence, et al.
Physical Review Letters
|
September 19, 2015
Improved Performance of High Areal Density Indirect Drive Implosions at the National Ignition Facility using a Four-Shock Adiabat Shaped Drive
D T Casey, J L Milovich, V A Smalyuk, et al.
Physical Review Letters
|
February 4, 2014
Measurements of an ablator-gas atomic mix in indirectly driven implosions at the National Ignition Facility
V A Smalyuk, R E Tipton, J E Pino, et al.
Physical Review Letters
|
August 4, 2025
First Demonstration of Improved Fusion Yield with Increased Compression through Reduced Adiabat in Inertial Confinement Fusion Experiments at the National Ignition Facility
M Hohenberger, D S Clark, K D Humbird, et al.
Physical Review. E
|
March 16, 2024
Design of the first fusion experiment to achieve target energy gain G>1
A L Kritcher, A B Zylstra, C R Weber, et al.
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of 16
Search research articles
Search
Showing results (141-150 of 160) with videos related to
Sort By:
Page
of 16
Physical Review Letters
|
May 27, 2014
First measurements of hydrodynamic instability growth in indirectly driven implosions at ignition-relevant conditions on the National Ignition Facility
V A Smalyuk, D T Casey, D S Clark, et al.
Physical Review Letters
|
April 28, 2020
Impact of Localized Radiative Loss on Inertial Confinement Fusion Implosions
A Pak, L Divol, C R Weber, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
August 15, 2014
Reduced instability growth with high-adiabat high-foot implosions at the National Ignition Facility
D T Casey, V A Smalyuk, K S Raman, et al.
Physical Review. E
|
November 18, 2025
Effect on compression of lowering the design adiabat in the SQ-n campaign
K L Baker, D T Casey, D S Clark, et al.
Physical Review Letters
|
August 27, 2025
Direct Experimental Proof of the Principal Role of Reduced High-Mode Hydrodynamic Mix in Recent Ignition Success on NIF
B Bachmann, L Divol, A Pak, et al.
The Review of Scientific Instruments
|
January 6, 2025
Ultra-fast single-crystal CVD diamonds in the particle time-of-flight (PTOF) detector for low yield burn-history measurements on the NIF (invited)
B L Reichelt, R Kishimori, Y Lawrence, et al.
Physical Review Letters
|
September 19, 2015
Improved Performance of High Areal Density Indirect Drive Implosions at the National Ignition Facility using a Four-Shock Adiabat Shaped Drive
D T Casey, J L Milovich, V A Smalyuk, et al.
Physical Review Letters
|
February 4, 2014
Measurements of an ablator-gas atomic mix in indirectly driven implosions at the National Ignition Facility
V A Smalyuk, R E Tipton, J E Pino, et al.
Physical Review Letters
|
August 4, 2025
First Demonstration of Improved Fusion Yield with Increased Compression through Reduced Adiabat in Inertial Confinement Fusion Experiments at the National Ignition Facility
M Hohenberger, D S Clark, K D Humbird, et al.
Physical Review. E
|
March 16, 2024
Design of the first fusion experiment to achieve target energy gain G>1
A L Kritcher, A B Zylstra, C R Weber, et al.
Page
of 16