Efficient method of gas laser pumping by an electron beam in the SIGE-1 experimental setup

Lasers, sources of coherent UV and vacuum UV radiation, plasmachemical reactors, reactors for cleaning fouled gases, etc., can be classified as devices the working medium of which is plasma formed as a result of the interaction of a high-current relativistic electronic beam with gas. Efficiency of s...

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Veröffentlicht in:Plasma physics reports 2011-12, Vol.37 (13), p.1109-1118
Hauptverfasser: Arlantsev, S. V., Kuz’min, G. P., Minaev, I. M., Mkheidze, G. P., Tikhonevich, O. V., Ul’yanov, D. K.
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container_end_page 1118
container_issue 13
container_start_page 1109
container_title Plasma physics reports
container_volume 37
creator Arlantsev, S. V.
Kuz’min, G. P.
Minaev, I. M.
Mkheidze, G. P.
Tikhonevich, O. V.
Ul’yanov, D. K.
description Lasers, sources of coherent UV and vacuum UV radiation, plasmachemical reactors, reactors for cleaning fouled gases, etc., can be classified as devices the working medium of which is plasma formed as a result of the interaction of a high-current relativistic electronic beam with gas. Efficiency of such devices which are united under the common name “systems of injection gas electronics” (SIGE) depends mainly on the efficiency of energy transfer from a beam to gas (η g = W g / W b ) and that of the transform of the energy transferred to gas into the energy of the ultimate product W in (η in = W in / W g ). As a special case of SIGE, an experimental bench laser is considered. The new efficient method of pumping is supposed to be implemented on this laser to optimize the energy contribution η g and useful output η in .
doi_str_mv 10.1134/S1063780X11070026
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source Springer Nature - Complete Springer Journals
subjects 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
Atomic
BEAM-PLASMA SYSTEMS
ELECTRON BEAMS
ENERGY TRANSFER
GAS LASERS
GERMANIUM SILICIDES
Molecular
Optical and Plasma Physics
Physics
Physics and Astronomy
PLASMA
PLASMA PRODUCTION
Plasma-Beam Processes
PUMPING
ULTRAVIOLET RADIATION
title Efficient method of gas laser pumping by an electron beam in the SIGE-1 experimental setup
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