Study of the fingerprint-texture formation in cholesteric liquid crystal film
碩士 === 國立交通大學 === 光電工程所 === 88 === The electric field induced cholesteric liquid crystal phase grating was formed by adjusting the thickness-natural pitch ratio d/p0 and applying voltage. The electric field was a quasi-static field and there was no backflow effect in the film. In this exp...
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ndltd-TW-088NCTU06140212016-07-08T04:22:41Z http://ndltd.ncl.edu.tw/handle/01457965387666849139 Study of the fingerprint-texture formation in cholesteric liquid crystal film 膽固醇液晶盒指紋結構形成之研究 Fu-Chen Chen 陳傅丞 碩士 國立交通大學 光電工程所 88 The electric field induced cholesteric liquid crystal phase grating was formed by adjusting the thickness-natural pitch ratio d/p0 and applying voltage. The electric field was a quasi-static field and there was no backflow effect in the film. In this experiment we use two different surface rubbing directions to form fingerprint patterns. Substrates of the film were horizontally aligned by hard rubbing. Angle between the alignment directions of the upper and lower substrates was changed for investigating the stripes direction of fingerprint texture. We found that the rubbing directions on upper and lower substrates can change the direction of phase grating. In addition, the phase grating’s stripe can be changed by external field and LC elastic energy and surface anchoring energy. We also study the polarization characteristic of the light for some diffraction orders in various electric fields. Shu-Hsia Chen 王淑霞 2000 學位論文 ; thesis 72 zh-TW |
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碩士 === 國立交通大學 === 光電工程所 === 88 === The electric field induced cholesteric liquid crystal phase grating was formed by adjusting the thickness-natural pitch ratio d/p0 and applying voltage. The electric field was a quasi-static field and there was no backflow effect in the film. In this experiment we use two different surface rubbing directions to form fingerprint patterns. Substrates of the film were horizontally aligned by hard rubbing. Angle between the alignment directions of the upper and lower substrates was changed for investigating the stripes direction of fingerprint texture. We found that the rubbing directions on upper and lower substrates can change the direction of phase grating. In addition, the phase grating’s stripe can be changed by external field and LC elastic energy and surface anchoring energy. We also study the polarization characteristic of the light for some diffraction orders in various electric fields.
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author2 |
Shu-Hsia Chen |
author_facet |
Shu-Hsia Chen Fu-Chen Chen 陳傅丞 |
author |
Fu-Chen Chen 陳傅丞 |
spellingShingle |
Fu-Chen Chen 陳傅丞 Study of the fingerprint-texture formation in cholesteric liquid crystal film |
author_sort |
Fu-Chen Chen |
title |
Study of the fingerprint-texture formation in cholesteric liquid crystal film |
title_short |
Study of the fingerprint-texture formation in cholesteric liquid crystal film |
title_full |
Study of the fingerprint-texture formation in cholesteric liquid crystal film |
title_fullStr |
Study of the fingerprint-texture formation in cholesteric liquid crystal film |
title_full_unstemmed |
Study of the fingerprint-texture formation in cholesteric liquid crystal film |
title_sort |
study of the fingerprint-texture formation in cholesteric liquid crystal film |
publishDate |
2000 |
url |
http://ndltd.ncl.edu.tw/handle/01457965387666849139 |
work_keys_str_mv |
AT fuchenchen studyofthefingerprinttextureformationincholestericliquidcrystalfilm AT chénfùchéng studyofthefingerprinttextureformationincholestericliquidcrystalfilm AT fuchenchen dǎngùchúnyèjīnghézhǐwénjiégòuxíngchéngzhīyánjiū AT chénfùchéng dǎngùchúnyèjīnghézhǐwénjiégòuxíngchéngzhīyánjiū |
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