DocumentCode :
1056734
Title :
Faster-than-light EMP source initiated by short X-ray pulse of laser plasma
Author :
Bessarab, Alexander V. ; Gorbunov, Alexander A. ; Martynenko, Sergey P. ; Prudkoy, Nikolay A.
Author_Institution :
All-Russian Sci. Res. Inst. of Exp. Phys., Russian Fed. Nucl. Center, Sarov, Russia
Volume :
32
Issue :
3
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
1400
Lastpage :
1403
Abstract :
The effect which manifests itself in the form of directed electromagnetic pulses initiated by an X-ray incident obliquely on the conducting surface has been confirmed and investigated experimentally in detail. The existence of the above-mentioned phenomenon was predicted more than 25 years ago. So, experimentally, a planar accelerating diode comprising a metallic cathode and grid anode was initiated by an oblique short soft X-ray pulse from a point laser plasma source. Then, the directed EMP source, i.e., the accelerated photoelectron current, was formed, whose boundary ran along the external surface of the anode at a faster-than-light velocity. The plasma was formed when a short-pulse (∼0.3 ns) laser radiation from ISKRA-5 facility was focused onto a plane Au target. The amplitude-in-time and spatial characteristics of the radiation emitted by the faster-than-light source are measured. The parameters of the photo-emission current and accelerated electron current are measured.
Keywords :
X-ray optics; anodes; electromagnetic pulse; gold; photocathodes; photodiodes; photoemission; plasma X-ray sources; plasma production by laser; plasma sources; Au; EMP source; accelerated electron current; accelerated photoelectron current; amplitude-in-time characteristics; conducting surface; directed electromagnetic pulses; grid anode; metallic cathode; oblique short soft X-ray pulse; obliquely incident X-ray; photoemission current; planar accelerating diode; point laser plasma source; short-pulse laser radiation; spatial characteristics; Acceleration; Anodes; EMP radiation effects; Optical pulses; Plasma accelerators; Plasma measurements; Plasma sources; Plasma x-ray sources; Surface emitting lasers; X-ray lasers; EMP; Electromagnetic pulse; X-rays;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2004.829825
Filename :
1321311
Link To Document :
بازگشت