Design and application of electron energy measurement system based on silicon photodiode

The change in electron energy is the key to ionization. Studying the change law plays an important role in analyzing the gap discharge process. In this paper, an electron energy measurement system is designed based on a silicon photodiode, and the feasibility analysis is given. Combined with a photo...

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Main Authors: Jianghai Geng, Xinyu Wang, Fangcheng Lv, Shengfu Wang, Ping Wang, Yujian Ding
Format: Article
Language:English
Published: AIP Publishing LLC 2020-01-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5136004
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author Jianghai Geng
Xinyu Wang
Fangcheng Lv
Shengfu Wang
Ping Wang
Yujian Ding
author_facet Jianghai Geng
Xinyu Wang
Fangcheng Lv
Shengfu Wang
Ping Wang
Yujian Ding
author_sort Jianghai Geng
collection DOAJ
description The change in electron energy is the key to ionization. Studying the change law plays an important role in analyzing the gap discharge process. In this paper, an electron energy measurement system is designed based on a silicon photodiode, and the feasibility analysis is given. Combined with a photomultiplier tube, the electron energy of a slightly uneven field of a 3 cm ball-to-plate gap under dc voltage is obtained during the discharge process. This system can obtain the relationship curve between external voltage and electron energy, which provides help in analyzing the development of the discharge process and the establishment of the criteria.
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spelling doaj.art-c79de1b17f4947ce9aebb7f81d48d96b2022-12-22T02:56:57ZengAIP Publishing LLCAIP Advances2158-32262020-01-01101015146015146-710.1063/1.5136004Design and application of electron energy measurement system based on silicon photodiodeJianghai Geng0Xinyu Wang1Fangcheng Lv2Shengfu Wang3Ping Wang4Yujian Ding5Hebei Provincial Key Laboratory of Power Transmission Equipment Security Defense, North China Electric Power University, No. 619 North of Yonghua Street, Baoding, ChinaHebei Provincial Key Laboratory of Power Transmission Equipment Security Defense, North China Electric Power University, No. 619 North of Yonghua Street, Baoding, ChinaHebei Provincial Key Laboratory of Power Transmission Equipment Security Defense, North China Electric Power University, No. 619 North of Yonghua Street, Baoding, ChinaState Grid QingHai Electric Power Research Institute, Xining 810000, ChinaHebei Provincial Key Laboratory of Power Transmission Equipment Security Defense, North China Electric Power University, No. 619 North of Yonghua Street, Baoding, ChinaChina Electric Power Research Institute, Beijing 100192, ChinaThe change in electron energy is the key to ionization. Studying the change law plays an important role in analyzing the gap discharge process. In this paper, an electron energy measurement system is designed based on a silicon photodiode, and the feasibility analysis is given. Combined with a photomultiplier tube, the electron energy of a slightly uneven field of a 3 cm ball-to-plate gap under dc voltage is obtained during the discharge process. This system can obtain the relationship curve between external voltage and electron energy, which provides help in analyzing the development of the discharge process and the establishment of the criteria.http://dx.doi.org/10.1063/1.5136004
spellingShingle Jianghai Geng
Xinyu Wang
Fangcheng Lv
Shengfu Wang
Ping Wang
Yujian Ding
Design and application of electron energy measurement system based on silicon photodiode
AIP Advances
title Design and application of electron energy measurement system based on silicon photodiode
title_full Design and application of electron energy measurement system based on silicon photodiode
title_fullStr Design and application of electron energy measurement system based on silicon photodiode
title_full_unstemmed Design and application of electron energy measurement system based on silicon photodiode
title_short Design and application of electron energy measurement system based on silicon photodiode
title_sort design and application of electron energy measurement system based on silicon photodiode
url http://dx.doi.org/10.1063/1.5136004
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AT fangchenglv designandapplicationofelectronenergymeasurementsystembasedonsiliconphotodiode
AT shengfuwang designandapplicationofelectronenergymeasurementsystembasedonsiliconphotodiode
AT pingwang designandapplicationofelectronenergymeasurementsystembasedonsiliconphotodiode
AT yujianding designandapplicationofelectronenergymeasurementsystembasedonsiliconphotodiode