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Ionization coefficients in gas mixtures

机译:混合气体中的电离系数

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We have tested the application of the common E/N (E-electric field,N-gas number density)or Wieland approximation [Van Brunt,R.J.,1987.Common parametrizations of electron transport,collision cross section,and dielectric strength data for binary gas mixtures.J.Appl.Phys.61 (5),1773-1787.]and the common mean energy (CME)combination of the data for pure gases to obtain ionization coefficients for mixtures.Test calculations were made for Ar-CH4,Ar-N2,He-Xe and CH4-N2 mixtures.Standard combination procedure gives poor results in general,due to the fact that the electron energy distribution is considerably different in mixtures and in individual gases at the same values of E/N.The CME method may be used for mixtures of gases with ionization coefficients that do not differ by more than two orders of magnitude which is better than any other technique that was proposed [Marie,D.,Radmilovic-Radenovic,M.,Petrovic,Z.Lj.,2005.On parametrization and mixture laws for electron ionization coefficients.Eur.Phys.J.D 35,313-321.].
机译:我们已经测试了常见的E / N(电场,N-气体数密度)或Wieland近似的应用[Van Brunt,RJ,1987。二元电子传输,碰撞截面和介电强度数据的通用参数[J.Appl.Phys.61(5),1773-1787。]和纯气体数据的共同平均能量(CME)组合以获得混合物的电离系数。对Ar-CH4, Ar-N2,He-Xe和CH4-N2混合物。由于在E / N值相同的情况下混合物和单个气体中的电子能量分布差异很大,因此标准组合程序通常得出的结果很差。 CME方法可用于电离系数相差不超过两个数量级的气体混合物,这比提出的任何其他技术要好[Marie,D.,Radmilovic-Radenovic,M.,Petrovic,Z。 Lj。,2005。关于电子电离系数的参数化和混合定律ur.Phys.J.D 35,313-321。]。

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