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B Radha

Showing results (61-70 of 70) with videos related to

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Physical Review Letters|October 4, 2012
Measurements of the T(t,2n)4He neutron spectrum at low reactant energies from inertial confinement implosionsD T Casey, J A Frenje, M Gatu Johnson, et al.
The Review of Scientific Instruments|April 6, 2021
The Scattered Light Time-history Diagnostic suite at the National Ignition FacilityM J Rosenberg, J E Hernandez, N Butler, et al.
Physical Review Letters|June 4, 2008
High-areal-density fuel assembly in direct-drive cryogenic implosionsT C Sangster, V N Goncharov, P B Radha, et al.
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|December 7, 2020
Direct-drive laser fusion: status, plans and futureE M Campbell, T C Sangster, V N Goncharov, et al.
Physical Review. E|November 20, 2024
Applications of a Rayleigh-Taylor model to direct-drive laser fusionC A Thomas, M J Rosenberg, W Theobald, et al.
Physical Review Letters|February 16, 2026
Enhancements in Laser-Direct-Drive Nuclear Performance with Target RadiusC A Thomas, W Theobald, J P Knauer, et al.
Nature|February 1, 2019
Tripled yield in direct-drive laser fusion through statistical modellingV Gopalaswamy, R Betti, J P Knauer, et al.
Physical Review Letters|July 23, 2016
Demonstration of Fuel Hot-Spot Pressure in Excess of 50 Gbar for Direct-Drive, Layered Deuterium-Tritium Implosions on OMEGAS P Regan, V N Goncharov, I V Igumenshchev, et al.
Physical Review Letters|August 26, 2022
Lawson Criterion for Ignition Exceeded in an Inertial Fusion ExperimentH Abu-Shawareb, R Acree, P Adams, et al.
Physical Review Letters|February 23, 2024
Achievement of Target Gain Larger than Unity in an Inertial Fusion ExperimentH Abu-Shawareb, R Acree, P Adams, et al.
Pageof 7

Showing results (61-70 of 70) with videos related to

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Pageof 7
You have reached the last page of results.This site can display upto 70 results.
Physical Review Letters|October 4, 2012
Measurements of the T(t,2n)4He neutron spectrum at low reactant energies from inertial confinement implosionsD T Casey, J A Frenje, M Gatu Johnson, et al.
The Review of Scientific Instruments|April 6, 2021
The Scattered Light Time-history Diagnostic suite at the National Ignition FacilityM J Rosenberg, J E Hernandez, N Butler, et al.
Physical Review Letters|June 4, 2008
High-areal-density fuel assembly in direct-drive cryogenic implosionsT C Sangster, V N Goncharov, P B Radha, et al.
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|December 7, 2020
Direct-drive laser fusion: status, plans and futureE M Campbell, T C Sangster, V N Goncharov, et al.
Physical Review. E|November 20, 2024
Applications of a Rayleigh-Taylor model to direct-drive laser fusionC A Thomas, M J Rosenberg, W Theobald, et al.
Physical Review Letters|February 16, 2026
Enhancements in Laser-Direct-Drive Nuclear Performance with Target RadiusC A Thomas, W Theobald, J P Knauer, et al.
Nature|February 1, 2019
Tripled yield in direct-drive laser fusion through statistical modellingV Gopalaswamy, R Betti, J P Knauer, et al.
Physical Review Letters|July 23, 2016
Demonstration of Fuel Hot-Spot Pressure in Excess of 50 Gbar for Direct-Drive, Layered Deuterium-Tritium Implosions on OMEGAS P Regan, V N Goncharov, I V Igumenshchev, et al.
Physical Review Letters|August 26, 2022
Lawson Criterion for Ignition Exceeded in an Inertial Fusion ExperimentH Abu-Shawareb, R Acree, P Adams, et al.
Physical Review Letters|February 23, 2024
Achievement of Target Gain Larger than Unity in an Inertial Fusion ExperimentH Abu-Shawareb, R Acree, P Adams, et al.
Pageof 7