光电阴极
光电子学
材料科学
光探测
电子光学
电子
量子效率
吸收(声学)
光电探测器
光学
砷化镓
电子亲和性(数据页)
联轴节(管道)
偶极子
探测器
阴极射线
光刻胶
电子枪
暗电流
化学
俄歇效应
粒子加速器
微通道
量子阱
半导体
原子物理学
光电二极管
宽禁带半导体
衰减系数
横截面
能量转换效率
物理
作者
Xincun Peng,Chaoyan Zhong,Jijun Zou,Wenjuan Deng
摘要
Transmission-mode (t-mode) GaAs negative electron affinity photocathodes (NEA-PCs) can be integrated with the optical focusing lenses and microchannel plates to produce high-quality electron beams and high-sensitive detectors. Quantum efficiency (QE) of ∼40% has been reported for the t-mode thick (>1000 nm) GaAs NEA-PCs. Nevertheless, practical applications of these devices have been seriously restricted by their long response time (tens of picoseconds). In this work, the all-dielectric meta-surfaces (ADMS) were designed as the light managers for the t-mode ultra-thin GaAs NEA-PCs. For the 500–850 nm waveband, high light absorption (>80%) can be obtained through coupling the electromagnetic dipole moments of ADMS into the leaky optical modes in 100 nm ultra-thin GaAs NEA-PC layer, which leads to enhanced QE higher than that of the thick ones, the response time less than 5 ps, and the mean transverse energy less than 60 meV, respectively. Given these properties, ADMS t-model ultra-thin NEA-PCs represent a promising photocathode to provide the high-brightness short-pulse spin-polarized electron beams and high-sensitive fast-response detectors for the electron accelerator and low-light-level photodetection applications, respectively.
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