Zobrazeno 1 - 3
of 3
pro vyhledávání: '"George S. Hicks"'
Autor:
Nicholas P. Dover, Tim Ziegler, Stefan Assenbaum, Constantin Bernert, Stefan Bock, Florian-Emanuel Brack, Thomas E. Cowan, Emma J. Ditter, Marco Garten, Lennart Gaus, Ilja Goethel, George S. Hicks, Hiromitsu Kiriyama, Thomas Kluge, James K. Koga, Akira Kon, Kotaro Kondo, Stephan Kraft, Florian Kroll, Hazel F. Lowe, Josefine Metzkes-Ng, Tatsuhiko Miyatake, Zulfikar Najmudin, Thomas Püschel, Martin Rehwald, Marvin Reimold, Hironao Sakaki, Hans-Peter Schlenvoigt, Keiichiro Shiokawa, Marvin E. P. Umlandt, Ulrich Schramm, Karl Zeil, Mamiko Nishiuchi
Publikováno v:
Light: Science & Applications, Vol 12, Iss 1, Pp 1-12 (2023)
High energy ions were accelerated by extreme space charge fields induced during relativistic transparency and optimised by tuning the target thickness to the individual laser parameters
Externí odkaz:
https://doaj.org/article/d07102169ff04415a252267576a520a2
Autor:
Kotaro Kondo, Mamiko Nishiuchi, Hironao Sakaki, Nicholas P. Dover, Hazel F. Lowe, Takumi Miyahara, Yukinobu Watanabe, Tim Ziegler, Karl Zeil, Ulrich Schramm, Emma J. Ditter, George S. Hicks, Oliver C. Ettlinger, Zulfikar Najmudin, Hiromitsu Kiriyama, Masaki Kando, Kiminori Kondo
Publikováno v:
Crystals, Vol 10, Iss 9, p 837 (2020)
The interaction of high-intensity laser pulses with solid targets can be used as a highly charged, energetic heavy ion source. Normally, intrinsic contaminants on the target surface suppress the performance of heavy ion acceleration from a high-inten
Externí odkaz:
https://doaj.org/article/593945bde5fd4169bc8d288620a43873
Autor:
Yu-Hsin Chen, Antonio C. Ting, Bahman Hafizi, Michael H. Helle, Luke A. Johnson, Mikhail N. Polyanskiy, Igor V. Pogorelsky, Marcus Babzien, Nicholas P. Dover, Oliver C. Ettlinger, George S. Hicks, Emma-Jane Ditter, Zulfikar Najmudin, Daniel F. Gordon
Publikováno v:
Physics of Plasmas. 30
We report on proton acceleration from intense CO2 laser-irradiated hydrogen plasmas at near-critical densities, with the density gradient steepened by Nd:YAG laser ablation-driven hydrodynamic shocks. While the experimental results, such as the quasi