Irradiation of aligned nanowire arrays with ultrashort laser pulses of relativistic intensity produces matter in the ultrahigh-energy density regime characterized by gigabar pressures, enabling new experiments in high-energy physics.Fil: Rocca, J. J.. Department Of Electrical And Engineering; Estados UnidosFil: Shlyaptsev, V. N.. Department Of Electrical And Engineering; Estados UnidosFil: Hollinger, R.. Department Of Electrical And Engineering; Estados UnidosFil: Bargsten, C.. Department Of Electrical And Engineering; Estados UnidosFil: Pukhov, A.. Heinrich-heine-universität Düsseldorf; AlemaniaFil: Kaymak, V.. Heinrich-heine-universität Düsseldorf; AlemaniaFil: Tommasini, R.. Lawrence Livermore National Laboratory; Estados UnidosFil: Lond...
Recent ultra-short high-power lasers can provide ultra-high laser intensity over 1022 W/cm2 . Laser ...
High power short-pulse lasers presently reach peak powers of a few hundred Terawatts up to a ...
Accelerators are today in every walk of science and life [1]. High intensity lasers drive frontiers ...
Laser absorption is one of the most important parameters governing laser-matter interactions. The la...
We report a significant enhancement in both the energy and the flux of relativistic electrons accele...
As tabletop lasers continue to reach record levels of peak power, the interaction of light with matt...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
Over the past fifteen years we have seen a surge in our ability to produce high intensities, five to...
The interaction of intense, ultrashort laser pulses with ordered nanostructure arrays offers a path ...
In the present paper we introduce a new accelerator concept for ions. The accelerator is nano-struct...
© 2002 American Institute of Physics.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/87...
By focusing petawatt peak power laser light to intensities up to 1021 Wcm−2, highly relativistic pla...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
At next week\u27s meeting of the American Physical Society Division of Plasma Physics in Seattle, th...
Since its birth, the laser has been extraordinarily effective in the study and applications of laser...
Recent ultra-short high-power lasers can provide ultra-high laser intensity over 1022 W/cm2 . Laser ...
High power short-pulse lasers presently reach peak powers of a few hundred Terawatts up to a ...
Accelerators are today in every walk of science and life [1]. High intensity lasers drive frontiers ...
Laser absorption is one of the most important parameters governing laser-matter interactions. The la...
We report a significant enhancement in both the energy and the flux of relativistic electrons accele...
As tabletop lasers continue to reach record levels of peak power, the interaction of light with matt...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
Over the past fifteen years we have seen a surge in our ability to produce high intensities, five to...
The interaction of intense, ultrashort laser pulses with ordered nanostructure arrays offers a path ...
In the present paper we introduce a new accelerator concept for ions. The accelerator is nano-struct...
© 2002 American Institute of Physics.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/87...
By focusing petawatt peak power laser light to intensities up to 1021 Wcm−2, highly relativistic pla...
The fundamental idea of LaserWakefield Acceleration (LWFA) is reviewed. An ultrafast intense laser p...
At next week\u27s meeting of the American Physical Society Division of Plasma Physics in Seattle, th...
Since its birth, the laser has been extraordinarily effective in the study and applications of laser...
Recent ultra-short high-power lasers can provide ultra-high laser intensity over 1022 W/cm2 . Laser ...
High power short-pulse lasers presently reach peak powers of a few hundred Terawatts up to a ...
Accelerators are today in every walk of science and life [1]. High intensity lasers drive frontiers ...