Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory
碩士 === 國立臺灣大學 === 天文物理研究所 === 104 === To observe the neutrino-nucleus coherent scattering and dark matter searching, a detection system with ultra-low energy high purity germanium detector has been built up by TEXONO Collaboration in Kuo-Sheng Nuclear Power Plant. Due to the rarity and small recoil...
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ndltd-TW-104NTU051990032017-05-07T04:26:43Z http://ndltd.ncl.edu.tw/handle/84818870922492230524 Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory 於國聖核電廠之高純鍺探測器背景的理解與研究 Jing-Han Chen 陳璟翰 碩士 國立臺灣大學 天文物理研究所 104 To observe the neutrino-nucleus coherent scattering and dark matter searching, a detection system with ultra-low energy high purity germanium detector has been built up by TEXONO Collaboration in Kuo-Sheng Nuclear Power Plant. Due to the rarity and small recoil energy of these processes, understanding the background sources and their contribution to the energy spectrum are the key factors in this experiment. By using a data analysis toolkit called ROOT which was developed by CERN to reproduce the background, comparing to the experimental data, we can estimate the upper limit of Tritium beta decay activities in HPGe crystal. In data analysis, the p-type Germanium detector has a surface effect which will distort the energy deposit in the surface of Ge crystal, a charge collection efficiency function is to determine the energy loss because of the surface effect. By ROOT and a simulation toolkit GEANT4, we can try to find out the possible structure of charge collection efficiency in Ge surface. 王名儒 王子敬 2016 學位論文 ; thesis 62 en_US |
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碩士 === 國立臺灣大學 === 天文物理研究所 === 104 === To observe the neutrino-nucleus coherent scattering and dark matter searching, a detection system with ultra-low energy high purity germanium detector has been built up by TEXONO Collaboration in Kuo-Sheng Nuclear Power Plant. Due to the rarity and small recoil energy of these processes, understanding the background sources and their contribution to the energy spectrum are the key factors in this experiment. By using a data analysis toolkit called ROOT which was developed by CERN to reproduce the background, comparing to the experimental data, we can estimate the upper limit of Tritium beta decay activities in HPGe crystal. In data analysis, the p-type Germanium detector has a surface effect which will distort the energy deposit in the surface of Ge crystal, a charge collection efficiency function is to determine the energy loss because of the surface effect. By ROOT and a simulation toolkit GEANT4, we can try to find out the possible structure of charge collection efficiency in Ge surface.
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王名儒 |
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王名儒 Jing-Han Chen 陳璟翰 |
author |
Jing-Han Chen 陳璟翰 |
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Jing-Han Chen 陳璟翰 Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
author_sort |
Jing-Han Chen |
title |
Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
title_short |
Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
title_full |
Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
title_fullStr |
Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
title_full_unstemmed |
Background Studies and Understanding for High-Purity Germanium Detector at Kuo-Sheng Neutrino Laboratory |
title_sort |
background studies and understanding for high-purity germanium detector at kuo-sheng neutrino laboratory |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/84818870922492230524 |
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