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Electronic stopping power of diamond for electrons and positrons

机译:电子停止钻石的电子和正弦

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摘要

We assess a new data set of mass electronic stopping powers of diamond for electrons and positrons. To this end, an optical energy-loss function (OELF) for this material is generated from available experimental dielectric properties of the valence band and photoabsorption mass attenuation coefficients, supplemented with a Drude-type analytical expression to interpolate at intermediate energies. From this synthetic OELF, a mean excitation energy equal to (88.5 ± 2.0) eV is extracted and the density-effect correction is evaluated using Fano’s simplified method. These quantities then allow calculating the mass electronic stopping power of diamond for electrons and positrons by means of the relativistic Bethe formula. The present results for 1 keV-1 GeV electrons in diamond are 0.9%-3.3% smaller than those corresponding to graphite as tabulated in ICRU Report 90.
机译:我们评估了一组新的数据集,即金刚石对电子和正电子的质量电子阻止能力。为此,该材料的光能损失函数(OELF)由价带的可用实验介电特性和光吸收质量衰减系数生成,并辅以Drude型解析表达式,以在中等能量下进行插值。从合成的OELF中,提取了等于(88.5±2.0)eV的平均激发能量,并使用Fano的简化方法评估了密度效应校正。这些量可以通过相对论性贝特公式计算出金刚石对电子和正电子的质量电子阻止力。目前,钻石中1keV-1GeV电子的结果比ICRU报告90中列出的石墨的结果小0.9%-3.3%。

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