碱性卤化物晶体静电放电表面散射KeV质子束的探测系统

Y. Fukazawa, Ryoki Nakagawa, Y. Susuki
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引用次数: 1

摘要

为了观察由电子刺激解吸(ESD)表面逐层解吸引起的离子表面散射的镜面振荡,将一束15 keV的质子束以小于1°的入射角撞击表面。我们准备了一个实验系统,通过方便地使用荧光屏幕来查看散射产率(散射模式)和商用数码相机来测量产率,来检查反射质子的散射产率。由于目前质子束的能量太低,无法照亮屏幕,所以在屏幕前面插入了一个微通道板。电子辐照测量显示出明显的阻尼镜面振荡;散射质子的角分布宽度随电子浓度的增加而同步振荡。根据测量的振荡周期,得到了样品温度下1.5 keV电子辐照下KBr(001)热脱附的ESD速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection System for KeV Proton Beam Scattered from an ESD-surface with Monolayer Pits of Alkali Halide Crystal
To observe specular oscillations in ion-surface scattering originating from layer-by-layer desorption of an electron stimulated desorbed (ESD) surface, a 15 keV proton beam was impinged on the surface with an angle of incidence less than 1°. We prepared an experimental system to examine the scattering yields of re‰ecting protons by conveniently employing a ‰uorescent screen to view scattering yields (scattering patterns) and a commercial digital camera for yield measurements. Because the present energy of the proton beam was too low to illuminate the screen, a micro-channel plate was inserted in front of the screen. Measurements with electron irradiation show obvious damping specular oscillations; the widths of angular distributions of scattered protons simultaneously oscillated with increasing electron ‰uence. From the measured periods of the oscillations, the ESD rates of thermal desorption from KBr(001) at 1.5 keV electrons irradiation were obtained for sample temperatures.
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