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Nanopillar arrays on semiconductor membranes as electron emission amplifiers

机译:半导体膜上的纳米柱阵列作为电子发射放大器

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摘要

A new transmission-type electron multiplier was fabricated from silicon-on-insulator (SOI) material by integrating an array of one-dimensional (1D) silicon nanopillars onto a two-dimensional (2D) silicon membrane. Primary electrons are injected into the nanopillar-membrane (NPM) system from the flat surface of the membrane, while electron emission from the nanopillars is probed by an anode. The secondary electron yield (SEY) from the nanopillars in the current device is found to be about 1.8 times that of the plain silicon membrane. This gain in electron number is slightly enhanced by the electric field applied from the anode. Further optimization of the dimensions of the NPM and an application of field emission promise an even higher gain for detector applications and allow for probing of electronic/mechanical excitations in an NPM system stimulated by incident particles or radiation.
机译:通过将一维(1D)硅纳米柱阵列集成到二维(2D)硅膜上,由绝缘体上硅(SOI)材料制成了一种新型的透射型电子倍增器。初级电子从膜的平坦表面注入到纳米柱膜(NPM)系统中,而阳极探测来自纳米柱的电子发射。发现当前装置中来自纳米柱的二次电子产率(SEY)约为普通硅膜的二次电子产率(SEY)的1.8倍。通过从阳极施加的电场,电子数量的这种增加会稍微增强。 NPM尺寸的进一步优化和场发射的应用有望为检测器应用带来更高的增益,并允许探测NPM系统中由入射粒子或辐射激发的电子/机械激发。

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