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THE INFLUENCE OF MULTIPLE SCATTERING PROCESSES ON THE ELECTRON MOBILITY IN LOW DENSITY METHANOL GAS

机译:低浓度甲醇气体中多种散射过程对电子迁移率的影响

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The electron drift mobility mu has been measured in CH3OH gas in the temperature range 303 less than or equal to T less than or equal to 363 K and in the number density range 2.4 x 10(17) less than or equal to n less than or equal to 2.1 x 10(19) cm(-3). It is usually assumed-although there is no foundation for it-that at such low gas densities the ''zero-field'' density-normalized mobility (mu n) does not depend on n, i.e. it can be described by the so-called Lorentz single collision approximation [see, e.g., N. Gee and G. R. Freeman, Can. J. Chem. 61, 1664 (1983)]. We observed, however, a density dependence of (mu n) which can be explained approximately in terms of coherent and incoherent multiple scattering corrections where the coherent contribution due to correlations between the scatterers predominates at lower temperatures. (C) 1996 American Institute of Physics. [References: 24]
机译:在CH3OH气体中,在303≤T或363 K的温度范围内,在2.4 x 10(17)的数密度范围内n小于或等于n的电子漂移迁移率mu进行了测量。等于2.1 x 10(19)cm(-3)。尽管没有基础,但通常假设是这样的:在如此低的气体密度下,“零场”密度归一化迁移率(mu n)不依赖于n,即可以用以下公式描述:称为洛伦兹(Lorentz)单次碰撞逼近[参见,例如N. Gee和GR Freeman,Can。 J.化学61,1664(1983)]。但是,我们观察到了密度的依赖性(μn),这可以用相干和非相干多重散射校正近似地解释,其中在较低温度下,由于散射体之间的相关性而引起的相干贡献占主导地位。 (C)1996年美国物理研究所。 [参考:24]

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