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Ginzburg, N.S.; Zotova, I.V.; Rozental, R.M.
Physics and applications of high energy density plasmas. Extreme state driven by pulsed electromagnetic energy2002
Physics and applications of high energy density plasmas. Extreme state driven by pulsed electromagnetic energy2002
AbstractAbstract
[en] Modeling carried out demonstrates possibility of generation of gigawatt power level S band microwave pulse with duration of several nanoseconds using superradiation of short electron beam moving along slow-wave periodical structure. A 10 ns / 500 keV / 5 kA accelerator of Kanazawa University can be used in such experiments. It is shown that significant increasing peak power can be obtained by optimization of voltage and current pulses waveforms. Required increasing of electron energy and current by the end of electron pulse can be achieved by using self-acceleration of a short beam passing through a system of passive cavities. (author)
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Horioka, Kazuhiko (ed.); National Inst. for Fusion Science, Toki, Gifu (Japan); 236 p; Jun 2002; p. 151-159; Symposium on ''physics and applications of high energy density plasmas''; Toki, Gifu (Japan); 20-21 Dec 2001; 20 refs., 11 figs.
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BEAMS, CURRENTS, ELECTROMAGNETIC RADIATION, ELECTRONIC EQUIPMENT, ELEMENTARY PARTICLES, EMISSION, ENERGY-LEVEL TRANSITIONS, EQUIPMENT, FERMIONS, FUNCTION GENERATORS, GIGAWATT POWER RANGE, LEPTON BEAMS, LEPTONS, PARTICLE BEAMS, PHOTON EMISSION, POWER RANGE, PULSE GENERATORS, RADIATIONS, SIMULATION, STIMULATED EMISSION
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