Excess energy partitioning between electrons departing at and in the ionization of helium near threshold

K. Asmis, M. Allan
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引用次数: 9

Abstract

Partitioning of excess energy between electrons departing at and after electron-impact ionization of helium has been measured. A recently developed scheme, using a magnetically collimated electron-impact spectrometer, pulsed incident electron beam and time-of-flight detection was used to detect the electrons departing in the forward and backward directions. The ratios of the forward and backward doubly differential cross sections (DDCS) for an incident electron energy 3 eV above threshold and secondary electron energies of 0.7, 1.5 and 2.9 eV were measured. The relative DDCS at and are also presented as a function of the secondary electron energy, for incident electron energies 3 and 5 eV above threshold. Our measurements show that the distribution of the secondary electrons is, in contrast to electrons detected at , not flat for electrons departing at and at the present low primary energies. The yield of the faster secondary electrons is forward peaked, the yield of the slower secondary electrons is backward peaked. The sum of the and DDCS is, however, flat within the experimental uncertainty limits.
在氦接近阈值的电离处和电离中离开的电子之间的过量能量分配
在氦的电子碰撞电离时和电离后离开的电子之间的多余能量分配已经被测量。采用磁准直电子冲击谱仪、脉冲入射电子束和飞行时间检测技术,对正向和反向离开的电子进行检测。测量了入射电子能量大于阈值3 eV和二次电子能量为0.7、1.5和2.9 eV时的正向和反向双微分截面(DDCS)的比值。当入射电子能量高于阈值3和5 eV时,和处的相对DDCS也表现为二次电子能量的函数。我们的测量结果表明,与探测到的电子相比,二次电子的分布不是平坦的,对于在当前低一次能量处和在当前低一次能量处离开的电子。较快的二次电子的产率是正向峰,较慢的二次电子的产率是反向峰。然而,在实验不确定度范围内,和DDCS的总和是平坦的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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