Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil

碩士 === 健行科技大學 === 電子工程系碩士班 === 104 === This research is the use of frustrated total reflection method and with different thickness of metals in Kretschmann configuration and Otto configuration to stimulate the surface plasma waves. Using computer simulation is the main point of this research. And th...

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Main Authors: Tian-Nan Lu, 呂天男
Other Authors: Cheng-Min Lee
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/54991029294830174013
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spelling ndltd-TW-104CYU054280232017-09-24T04:40:56Z http://ndltd.ncl.edu.tw/handle/54991029294830174013 Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil 利用受挫式內部全反射法及激發表面電漿波組態對食用油中苯駢芘成分之偵測 Tian-Nan Lu 呂天男 碩士 健行科技大學 電子工程系碩士班 104 This research is the use of frustrated total reflection method and with different thickness of metals in Kretschmann configuration and Otto configuration to stimulate the surface plasma waves. Using computer simulation is the main point of this research. And the 632.8(nm) He-Ne laser is used as a light source in these two kinds of configurations that have been mentioned above. The conclusions of this research are just like the following statements: while benzopyrene in Kretschmann configuration, we will get a better depth from the surface plasma wave resonance angle when copper film is 40(nm), silver film is 53(nm) and gold film is 44(nm). And while benzopyrene in Otto configuration, we will get a better depth from the surface plasma wave resonance angle when copper film is 130(nm), silver film is 260(nm) and gold film is 140(nm). Cheng-Min Lee 李正民 2016 學位論文 ; thesis 41 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 健行科技大學 === 電子工程系碩士班 === 104 === This research is the use of frustrated total reflection method and with different thickness of metals in Kretschmann configuration and Otto configuration to stimulate the surface plasma waves. Using computer simulation is the main point of this research. And the 632.8(nm) He-Ne laser is used as a light source in these two kinds of configurations that have been mentioned above. The conclusions of this research are just like the following statements: while benzopyrene in Kretschmann configuration, we will get a better depth from the surface plasma wave resonance angle when copper film is 40(nm), silver film is 53(nm) and gold film is 44(nm). And while benzopyrene in Otto configuration, we will get a better depth from the surface plasma wave resonance angle when copper film is 130(nm), silver film is 260(nm) and gold film is 140(nm).
author2 Cheng-Min Lee
author_facet Cheng-Min Lee
Tian-Nan Lu
呂天男
author Tian-Nan Lu
呂天男
spellingShingle Tian-Nan Lu
呂天男
Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
author_sort Tian-Nan Lu
title Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
title_short Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
title_full Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
title_fullStr Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
title_full_unstemmed Using Frustrated Total Internal Reflection Method and Stimulating Surface Plasma Wave Configuration to Ingredients of the Benzopyrene of Edible Oil
title_sort using frustrated total internal reflection method and stimulating surface plasma wave configuration to ingredients of the benzopyrene of edible oil
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/54991029294830174013
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