A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter

碩士 === 國立中興大學 === 奈米科學研究所 === 105 === The research intends to improve the system of Radio-Photoluminescence Glass Dosimeter (RPLGD). It has significant progress on elevating the ability of laser focusing and the quality of image-forming with coaxial measurement. The results also show that Charge-cou...

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Main Authors: Ching-Hao Chen, 陳景浩
Other Authors: Chien-Chung Jeng
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/80575451111417603429
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spelling ndltd-TW-105NCHU57590022017-09-15T04:40:21Z http://ndltd.ncl.edu.tw/handle/80575451111417603429 A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter 同軸式玻璃輻射劑量計判讀儀研發 Ching-Hao Chen 陳景浩 碩士 國立中興大學 奈米科學研究所 105 The research intends to improve the system of Radio-Photoluminescence Glass Dosimeter (RPLGD). It has significant progress on elevating the ability of laser focusing and the quality of image-forming with coaxial measurement. The results also show that Charge-coupled Device(CCD) and Photomultiplier(PMT) can be switched. Meanwhile, the research enhanced the stability of RPLGD holder that it was obviously shorten the time of focusing and measurement and more convenience to test. For further analysis and detection, the research measured 115 pieces of 1 Gy samples which are 1.5 mm of diameter and 1.8 mm of length in two kinds of experimental modes. To compare with the previous system, the results of the round face measurement with same amount of samples which are within ±5% error in average value were raised from 71% to 75%. To apply the same formula to linear regression analysis, the developed RPLGD has the same linear trending as the previous system. Thus, the research adjusted the relationship between the intensity of the luminescence signal and the radiation dose to make the model much near to the lifetime then examining the doses of cumulative radiation. Chien-Chung Jeng 鄭建宗 2017 學位論文 ; thesis 47 zh-TW
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description 碩士 === 國立中興大學 === 奈米科學研究所 === 105 === The research intends to improve the system of Radio-Photoluminescence Glass Dosimeter (RPLGD). It has significant progress on elevating the ability of laser focusing and the quality of image-forming with coaxial measurement. The results also show that Charge-coupled Device(CCD) and Photomultiplier(PMT) can be switched. Meanwhile, the research enhanced the stability of RPLGD holder that it was obviously shorten the time of focusing and measurement and more convenience to test. For further analysis and detection, the research measured 115 pieces of 1 Gy samples which are 1.5 mm of diameter and 1.8 mm of length in two kinds of experimental modes. To compare with the previous system, the results of the round face measurement with same amount of samples which are within ±5% error in average value were raised from 71% to 75%. To apply the same formula to linear regression analysis, the developed RPLGD has the same linear trending as the previous system. Thus, the research adjusted the relationship between the intensity of the luminescence signal and the radiation dose to make the model much near to the lifetime then examining the doses of cumulative radiation.
author2 Chien-Chung Jeng
author_facet Chien-Chung Jeng
Ching-Hao Chen
陳景浩
author Ching-Hao Chen
陳景浩
spellingShingle Ching-Hao Chen
陳景浩
A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
author_sort Ching-Hao Chen
title A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
title_short A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
title_full A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
title_fullStr A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
title_full_unstemmed A Research on Developing The interpretoscope of Coaxial Radiophotoluminescent Glass Dosimeter
title_sort research on developing the interpretoscope of coaxial radiophotoluminescent glass dosimeter
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/80575451111417603429
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