热离子发射
电子
电子枪
硅
探测器
阴极
原子物理学
物理
材料科学
核物理学
光电子学
阴极射线
电气工程
光学
工程类
作者
K. Urban,M. Biassoni,Marco Carminati,F. Edzards,C. Fiorini,Christian Forstner,P. Lechner,Andrea Nava,D. Siegmann,D. Spreng,S. Mertens
标识
DOI:10.1088/1748-0221/19/06/p06004
摘要
Abstract The TRISTAN detector is a new detector for electron spectroscopy at the Karlsruhe Tritium Neutrino (KATRIN) experiment. The semiconductor detector utilizes the silicon drift detector technology and will enable the precise measurement of the entire tritium β -decay electron spectrum. Thus, a significant fraction of the parameter space of potential neutrino mass eigenstates in the keV-mass regime can be probed. We developed a custom electron gun based on the effect of thermionic emission to characterize the TRISTAN detector modules with mono-energetic electrons before installation into the KATRIN beamline. The electron gun provides an electron beam with up to 25 keV kinetic energy and an electron rate in the order of 10 5 electrons per second. This manuscript gives an overview of the design and commissioning of the electron gun. In addition, we will shortly discuss a first measurement with the electron gun to characterize the electron response of the TRISTAN detector.
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