等离子体铝光电阴极闪烁检测系统的改进

H. Zaki Dizaji, A. Arabkhorasani, J. Khalilzadeh, Y. Shahamat
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引用次数: 0

摘要

一大类核辐射探测系统是基于闪烁探测器的。光电倍增管是影响闪烁探测器性能的最重要、最有效的子系统之一。采用等离子体光电阴极的光电倍增管提高了效率,减少了死区时间。在本研究中,为了提高光电阴极的效率和光学响应,利用等离子体现象设计并模拟了一种新型光电阴极。利用金属铝表面的周期性圆形纳米空腔,提出了一种结构,通过使入射光与表面的电子密度波配对,在所需的波长范围内产生等离子体强化,并且场强大大增加。这样,光电阴极的量子效率得到了提高,探测效率比以前的情况提高了15倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of Scintillation Detection System using Plasmonic Aluminum Photocathode
A large category of nuclear radiation detection systems are based on scintillation detectors. One of the most important and effective subsystems in performance of scintillation detectors is photomultiplier tube. Photomultiplier tubes with plasmonic photocathodes increase efficiency and decrease dead time. In this research, in order to improve the efficiency and optical response of the photocathode, the plasmonic phenomenon has been used and a new photocathode has been designed and simulated. By periodic circular nanocavities on the surface of aluminum metal, a structure is presented that by making it possible to pair the incoming light to an electron density wave on the surface, plasmonic intensification is created in the desired wavelength range and the field intensity increases greatly. In this way, the quantum efficiency of the photocathode is improved and the detection efficiency is increased up to 15 times compared to the previous cases.
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