Study on secondary electron suppression in compact D–D neutron generator

被引:0
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作者
Zhi-Wu Huang
Xiao-Hou Bai
Chang-Qi Liu
Jun-Run Wang
Zhan-Wen Ma
Xiao-Long Lu
Zheng Wei
Zi-Min Zhang
Yu Zhang
Ze-En Yao
机构
[1] Lanzhou University,School of Nuclear Science and Technology
[2] Lanzhou University,Engineering Research Center for Neutron Application Technology, Ministry of Education
[3] Chinese Academy of Sciences,Institute of Modern Physics
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D–D neutron generator; Secondary electron suppression; Secondary electron emission coefficient;
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摘要
A compact D–D neutron generator, with a peak neutron yield of D–D reactions up to 2.48 × 108 n/s is being developed at Lanzhou University in China for application in real-time neutron activation analysis. During tests, the problem of back acceleration of secondary electrons liberated from the neutron production target by deuterium ions bombardment was encountered. In this study, an electric field method and a magnetic field method for suppressing secondary electrons are designed and experimentally investigated. The experimental results show that the electric field method is superior to the magnetic field method. Effective suppression of the secondary electrons can be achieved via electrostatic suppression when the bias voltage between the target and the extraction-accelerating electrode is > 204 V. Furthermore, the secondary electron emission coefficient for the mixed deuterium ion (D1+, D2+, and D3+) impacting on molybdenum is estimated. In the deuterium energy range of 80–120 keV, the estimated secondary electron emission coefficients are approximately 5–5.5 for the mixed deuterium ion glancing incidence of 45° and approximately 3.5–3.9 for the mixed deuterium ion normal incidence.
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