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Energy and angular distributions of backscattered electrons from the collision of 8-keV electrons with a thick tungsten target

机译:8-keV电子与厚钨靶的碰撞引起的反向散射电子的能量和角分布

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The energy and angular distributions of backscattered electrons produced under impact of 8.0-keV electrons with a thick tungsten target are measured. The energy range of backscattered electrons is considered between 70 and 1700 eV. The angle of incidence alpha and the takeoff angle theta are chosen to have values alpha=0degrees, 10degrees, and 20degrees and theta=110degrees, 120degrees, and 130degrees, respectively. The energy distribution function exhibits two sharp peaks, which are found to appear at 216 and 548 eV. They are identified as Auger peaks of tungsten arising due to electron transitions 4d-6s6p and 4s-6s6p, respectively. The measured energy spectra are compared with two different theoretical models. The theoretical predictions are found to yield a good agreement with the experiment in the considered energy range of the backscattered electrons.
机译:测量了在具有厚钨靶的8.0-keV电子的冲击下产生的反向散射电子的能量和角度分布。反向散射电子的能量范围被认为在70和1700 eV之间。选择入射角α和起飞角θ以分别具有值α= 0度,10度和20度以及θ= 110度,120度和130度。能量分布函数表现出两个尖峰,发现在216和548 eV出现。它们被确定为分别由于电子跃迁4d-6s6p和4s-6s6p产生的钨的俄歇峰。将测得的能谱与两种不同的理论模型进行比较。理论上的发现被发现与背散射电子的能量范围内的实验有很好的一致性。

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