DocumentCode :
3205677
Title :
High power UV and VUV pulsed excilamp
Author :
Tarasenko, V.F. ; Baksht, E. Kh ; Erofeev, M.V. ; Lomaev, M.I. ; Rybka, D.V. ; Sorokin, D.A.
Author_Institution :
Inst. of High Current Electron. (IHCE), RAS, Tomsk, Russia
fYear :
2009
fDate :
June 28 2009-July 2 2009
Firstpage :
1422
Lastpage :
1424
Abstract :
This paper reports on the pulse sources of spontaneous UV and VUV radiation based on the non-equilibrium high-pressure gas discharge plasma. Emission characteristics of a runaway preionized diffuse discharge plasma of inert gases and its halogenides under pressure up to 12 atm and at high specific power of excitation (up to ~100 MW/cm3) have been investigated. In xenon the highest power achieved up to 8 MW. At pressure of 1.2 atm, the energy of spontaneous Xe2* dimmers radiation in the full solid angle was ~45 mJ/cm3, and the FWHM of a radiation pulse was ~110 ns. The spontaneous radiation power monotonic rise and decreasing of pulse duration in xenon was observed at pressures up to 12 atm. The power of ~1 MW /cm3 at duration of ~8 ns of Xe2* dimmers radiation was obtained at this pressure. The highest pulsed power densities of KrCl*, XeCl*, XeBr*, and KrBr* molecules radiation were 3.7 kW/cm2, 3.1 kW/cm2, 4.5 kW/cm2, and 2.1 kW/cm2 at the efficiencies 5%, 4.8%, 5.5%, and 4%, respectively. At this conditions input energy to discharge plasma was ~1 J.
Keywords :
discharge lamps; discharges (electric); krypton compounds; spectroscopic light sources; spontaneous emission; xenon; xenon compounds; KrBr; KrCl; VUV pulsed excilamp; Xe2; XeBr; XeCl; emission characteristics; halogenides; high-power UV lamp; inert gases; nonequilibrium high-pressure gas discharge plasma; power 8 MW; pressure 1.2 atm; pressure 12 atm; pulsed power density; radiation pulse; runaway preionized diffuse discharge plasma; spontaneous radiation; xenon; Anodes; Cathodes; Discharges; Fault location; Gases; Plasma properties; Plasma sources; Pulse transformers; Voltage; Xenon;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 2009. PPC '09. IEEE
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4244-4064-1
Electronic_ISBN :
978-1-4244-4065-8
Type :
conf
DOI :
10.1109/PPC.2009.5386393
Filename :
5386393
Link To Document :
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