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首页> 外文期刊>Applied Surface Science >Inelastic mean free path, surface excitation parameter, and differential surface excitation parameter in Au for 300-3000 eV electrons
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Inelastic mean free path, surface excitation parameter, and differential surface excitation parameter in Au for 300-3000 eV electrons

机译:300-3000 eV电子的非弹性平均自由程,表面激发参数和表面微分激发参数

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摘要

An analytical approach for simultaneously determining an inelastic mean free path (IMFP), a surface excitation parameter (SEP) and a differential SEP (DSEP) with absolute units was applied for the analysis of absolutely measured reflection electron energy loss spectra for Au. The IMFP, SEP and DSEP in Au for 300-3000 eV electrons are successfully obtained. The obtained DSEPs show a reasonable agreement with those theoretically calculated. The present SEPs were compared with those calculated by several empirical equations, revealing that the present SEPs are close to those calculated using the Oswald's equation. The IMFPs for Au determined by the present analysis were compared with those calculated by the TPP-2M predictive equation, revealing that the present IMFPs are in fairly good agreement with those calculated by the TPP-2M equation. The results confirmed that the present approach is effective for experimentally determining the SEP, DSEP, and IMFP for electrons in solids.
机译:同时确定具有绝对单位的非弹性平均自由程(IMFP),表面激发参数(SEP)和微分SEP(DSEP)的分析方法用于分析绝对测量的Au反射电子能量损失谱。成功获得了Au-中300-3000 eV电子的IMFP,SEP和DSEP。所获得的DSEP与理论计算的DSEP显示出合理的一致性。将当前的SEP与通过几个经验方程式计算出的SEP进行比较,发现当前的SEP与使用Oswald方程计算出的SEP接近。通过本分析确定的Au的IMFP与通过TPP-2M预测方程计算的IMFP进行了比较,发现当前的IMFP与通过TPP-2M方程计算的IMFP相当吻合。结果证实了本方法对于实验确定固体中电子的SEP,DSEP和IMFP是有效的。

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