Zobrazeno 1 - 4
of 4
pro vyhledávání: '"H. G. J. Chou"'
Autor:
X. Jiao, C. B. Curry, M. Gauthier, H.-G. J. Chou, F. Fiuza, J. B. Kim, D. D. Phan, E. McCary, E. C. Galtier, G. M. Dyer, B. K. Ofori-Okai, L. Labun, O. Z. Labun, C. Schoenwaelder, R. Roycroft, G. Tiwari, G. D. Glenn, F. Treffert, S. H. Glenzer, B. M. Hegelich
Publikováno v:
Frontiers in Physics, Vol 10 (2023)
A compact high-flux, short-pulse neutron source would have applications from nuclear astrophysics to cancer therapy. Laser-driven neutron sources can achieve fluxes much higher than spallation and reactor neutron sources by reducing the volume and ti
Externí odkaz:
https://doaj.org/article/be53a335c80e45299d8b1ed4606873ad
Autor:
F. Treffert, G. D. Glenn, H.-G. J. Chou, C. Crissman, C. B. Curry, D. P. DePonte, F. Fiuza, N. J. Hartley, B. Ofori-Okai, M. Roth, S. H. Glenzer, M. Gauthier
Publikováno v:
Physics of Plasmas. 29:123105
High-power lasers can generate energetic particle beams and astrophysically relevant pressure and temperature states in the high-energy-density (HED) regime. Recently-commissioned high-repetition-rate (HRR) laser drivers are capable of producing thes
Autor:
F. Treffert, C. B. Curry, H.-G. J. Chou, C. J. Crissman, D. P. DePonte, F. Fiuza, G. D. Glenn, R. C. Hollinger, R. Nedbailo, J. Park, C. Schoenwaelder, H. Song, S. Wang, J. J. Rocca, M. Roth, S. H. Glenzer, M. Gauthier
Publikováno v:
Applied Physics Letters. 121:074104
We demonstrate high repetition-rate deuteron acceleration by irradiating a continuously flowing, ambient temperature liquid heavy water jet with the high-intensity ALEPH laser. The laser delivered up to 5.5 J (120 TW, 1.2 × 1021 W/cm2) laser energy
Autor:
G. D. Glenn, H. G. J. Chou, Ying Y. Tsui, Frederico Fiuza, Maxence Gauthier, Chandra Curry, Chelsea A. S. Dunning, S. H. Glenzer, Magdalena Bazalova-Carter
Publikováno v:
Review of Scientific Instruments. 91:093303
Here, we extend flatbed scanner calibrations of GafChromic EBT3, MD-V3, and HD-V2 radiochromic films using high-precision x-ray irradiation and monoenergetic proton bombardment. By computing a visibility parameter based on fractional errors, optimal