Stimulated emission from the XeCl molecule excited by an electron beam
Results are presented of an investigation of stimulated emission from the XeCl molecule excited by an electron beam. Determinations were made of the influence of the pump density, mixture composition and pressure, and of the type of buffer gas (He, Ne, Ar, Kr) and chlorine carrier (CCl/sub 4/, CHCl/...
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Veröffentlicht in: | Sov. J. Quant. Electron. (Engl. Transl.); (United States) 1979-07, Vol.9 (7), p.918-920 |
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container_title | Sov. J. Quant. Electron. (Engl. Transl.); (United States) |
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creator | Losev, V F Tarasenko, Viktor F Bychkov, Yu I |
description | Results are presented of an investigation of stimulated emission from the XeCl molecule excited by an electron beam. Determinations were made of the influence of the pump density, mixture composition and pressure, and of the type of buffer gas (He, Ne, Ar, Kr) and chlorine carrier (CCl/sub 4/, CHCl/sub 3/, CF/sub 2/Cl/sub 2/) on the radiation energy and pulse duration, and also on the delay of the radiation pulse relative to the electron beam current. A radiation power of 11 MW and a specific radiation energy of approx.10 J/liter were obtained. An analysis was made of the formation mechanism of XeCl molecules. |
doi_str_mv | 10.1070/QE1979v009n07ABEH009222 |
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Determinations were made of the influence of the pump density, mixture composition and pressure, and of the type of buffer gas (He, Ne, Ar, Kr) and chlorine carrier (CCl/sub 4/, CHCl/sub 3/, CF/sub 2/Cl/sub 2/) on the radiation energy and pulse duration, and also on the delay of the radiation pulse relative to the electron beam current. A radiation power of 11 MW and a specific radiation energy of approx.10 J/liter were obtained. 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J. Quant. Electron. (Engl. Transl.); (United States)</title><description>Results are presented of an investigation of stimulated emission from the XeCl molecule excited by an electron beam. Determinations were made of the influence of the pump density, mixture composition and pressure, and of the type of buffer gas (He, Ne, Ar, Kr) and chlorine carrier (CCl/sub 4/, CHCl/sub 3/, CF/sub 2/Cl/sub 2/) on the radiation energy and pulse duration, and also on the delay of the radiation pulse relative to the electron beam current. A radiation power of 11 MW and a specific radiation energy of approx.10 J/liter were obtained. 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J. Quant. Electron. (Engl. Transl.); (United States)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Losev, V F</au><au>Tarasenko, Viktor F</au><au>Bychkov, Yu I</au><aucorp>Institute of Power Electronics, Siberian Branch of the Academy of Sciences of the USSR, Tomsk</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Stimulated emission from the XeCl molecule excited by an electron beam</atitle><jtitle>Sov. J. Quant. Electron. (Engl. Transl.); (United States)</jtitle><date>1979-07-31</date><risdate>1979</risdate><volume>9</volume><issue>7</issue><spage>918</spage><epage>920</epage><pages>918-920</pages><issn>0049-1748</issn><eissn>2169-530X</eissn><abstract>Results are presented of an investigation of stimulated emission from the XeCl molecule excited by an electron beam. Determinations were made of the influence of the pump density, mixture composition and pressure, and of the type of buffer gas (He, Ne, Ar, Kr) and chlorine carrier (CCl/sub 4/, CHCl/sub 3/, CF/sub 2/Cl/sub 2/) on the radiation energy and pulse duration, and also on the delay of the radiation pulse relative to the electron beam current. A radiation power of 11 MW and a specific radiation energy of approx.10 J/liter were obtained. An analysis was made of the formation mechanism of XeCl molecules.</abstract><cop>United States</cop><pub>IOP Publishing</pub><doi>10.1070/QE1979v009n07ABEH009222</doi><tpages>3</tpages></addata></record> |
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source | IOP Publishing Journals; Institute of Physics (IOP) Journals - HEAL-Link |
subjects | 420300 - Engineering- Lasers- (-1989) 640302 - Atomic, Molecular & Chemical Physics- Atomic & Molecular Properties & Theory ATOMIC AND MOLECULAR PHYSICS BEAMS CHLORIDES CHLORINE COMPOUNDS ELECTRON BEAMS EMISSION ENERGY YIELD ENERGY-LEVEL TRANSITIONS ENGINEERING EXCITATION GAS LASERS HALIDES HALOGEN COMPOUNDS LASERS LEPTON BEAMS PARTICLE BEAMS PULSE TECHNIQUES RARE GAS COMPOUNDS STIMULATED EMISSION XENON CHLORIDES XENON COMPOUNDS |
title | Stimulated emission from the XeCl molecule excited by an electron beam |
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