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ELECTRON ENERGY LOSS RATES IN GASEOUS ARGON DETERMINED FROM TRANSIENT MICROWAVE CONDUCTIVITY

机译:瞬态微波电导率测定的气态氩中电子的能量损失率

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Thermalization of high-energy electrons in gaseous Ar at room temperature has been investigated by analyzing the imaginary component of the transient microwave conductivity produced by pulse radiolysis. The conductivity signal amplitude showing a peak due to the Ramsauer minimum has been correlated with the amplitude derived from calculations of the effective collision frequency using Margenau's formula assuming Maxwellian velocity distribution of electrons. Two approaches, using the peak and the plateau of the signal, for absolute normalization of the conductivity amplitude give results consistent with each other. It has been found that the excess mean electron energy drops very rapidly to about 0.2 eV and then decreases exponentially with a constant relaxation time. The thermalization time for 1 eV electrons to relax to 10% thermal energy has been determined to be 5.8 ms at 1 Torr Ar. Electron energy loss rate coefficients have been described as a function of the mean electron energy. (C) 1997 American Institute of Physics. [References: 68]
机译:通过分析脉冲辐射分解产生的瞬态微波电导率的虚部,研究了室温下气态Ar中高能电子的热化。示出了由于拉姆绍尔最小值引起的峰值的电导率信号幅度与使用马格诺公式(假设电子的麦克斯韦速度分布),通过有效碰撞频率的计算得出的幅度相关。使用信号的峰值和平稳段对电导率振幅进行绝对归一化的两种方法得出的结果彼此一致。已经发现,过量的平均电子能量非常迅速地下降至约0.2eV,然后在恒定的弛豫时间下呈指数下降。 1 eV电子松弛到10%热能的热化时间已确定为在1 Torr Ar下为5.8 ms。已经描述了电子能量损失率系数作为平均电子能量的函数。 (C)1997美国物理研究所。 [参考:68]

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