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Analysis of a new electron-runaway mechanism and record-high runaway-electron currents achieved in dense-gas discharges

机译:分析一种新的电子失控机理和在浓气体放电中达到的创纪录的高失控电子电流

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摘要

It is shown that the `new' runaway criterion for electrons in dense gases suggested by Tarasenko and Yakovlenko (Usp. Fiz. Nauk 174 953 (2004) [Phys. Usp. 47 887 (2004)]) is actually not a criterion, and the 'upper' curve of the U(Pd) dependence does not exist. Only the Z-shaped segment of U(Pd) in the region of small Pd, known for helium since the early 1930s, agrees with the reality. The decrease in the ionization coefficient with E/P increasing and the existence of Pd.;. for helium have been known since the same time. Doubt is cast upon the 'record' runaway-electron currents at P = 1 atm. The acceleration mechanism suggested in the above article has been known for a long time, and the interpretation of the `record' runaway-electron currents on this basis is the result of fitting the data to the formula that implies the lack of electron multiplication but is 'understood' by Tarasenko and Yakovlenko as a runaway criterion. Nothing new has been added to the mechanism of volumetric discharge formation, but mistakes have been made.
机译:结果表明,Tarasenko和Yakovlenko提出的关于高密度气体中电子的“新”失控准则(Usp。Fiz。Nauk 174 953(2004)[Phys。Usp。47 887(2004)])实际上不是准则,并且U(Pd)依赖关系的“上部”曲线不存在。自1930年代初以来就以氦气着称的小Pd区域中,只有U(Pd)的Z形片段与现实相符。电离系数随E / P的增加而降低,并且存在Pd。;。自同一时间以来,人们就知道氦。对P = 1 atm的“记录”电子失控电流的怀疑。上面文章中提出的加速机制早已为人所知,因此在此基础上对“记录”失控电子电流的解释是将数据拟合为暗含电子倍增的公式的结果,但是Tarasenko和Yakovlenko的“理解”是失控的标准。体积放电形成的机理没有增加任何新内容,但是却犯了错误。

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