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- W2980593386 abstract "The accurate surface potential measurements in charging phenomena of insulating materials are highly desired as important information about charging can be inferred from surface potential. The interaction of the charged particle, induced by probe particles and emitted from sample surfaces, with surface potential enables its determination from the shift in the characteristic peak in the energy spectrum—the “peak-shift” method. However, important features, which are believed to be correlated with charging, are presented in the energy spectrum, and on the other hand, the peak-shift method is not suited for all charging phenomena. We use a Monte Carlo method to evaluate the charging of the semi-infinite SiO2 bulk induced by primary-electron irradiation and clarify the correlation of energy spectral features with charging and the applicability range of the peak-shift method. To take into account the charge trapping by defects, vacancies, and impurities etc., trapping sites are assumed to uniformly distribute in the sample, with the depth distribution described by a Gaussian function. Furthermore, the trapping of low-energy secondary electrons is also included to model their emissions more accurately. With simulation reliability evidenced by the agreement on the peak-shift magnitude with experiment, this work advances our understanding of the peak-shift method." @default.
- W2980593386 created "2019-10-25" @default.
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- W2980593386 date "2020-02-01" @default.
- W2980593386 modified "2023-09-22" @default.
- W2980593386 title "Monte Carlo study on the surface potential measurement using the peak-shift method" @default.
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- W2980593386 doi "https://doi.org/10.1016/j.apsusc.2019.144138" @default.
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