Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures
碩士 === 國立東華大學 === 應用物理研究所 === 98 === In our previous research, with SQUID measurement, we found and confirmed magnetism of Ge nano-structure with SiO2 caped behaved specially. The result is obviously different from the diamagnetism behavior of Ge bulk. Our primary goal is providing an effective meas...
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ndltd-TW-098NDHU55040012016-04-27T04:11:00Z http://ndltd.ncl.edu.tw/handle/36613690855382806210 Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures 磁光柯爾效應儀之架設及奈米結構中的磁滯量測與分析 Shu-Fan Yeh 葉書帆 碩士 國立東華大學 應用物理研究所 98 In our previous research, with SQUID measurement, we found and confirmed magnetism of Ge nano-structure with SiO2 caped behaved specially. The result is obviously different from the diamagnetism behavior of Ge bulk. Our primary goal is providing an effective measurement method with surface magnetic sensitivity by construct an automatic MOKE (Magneto-Optical Kerr Effect) system, for reviewing the physical model we set up based on the results of SQUID measurement. We are focusing in further exploration of magnetic interactions between these kinds of nano-structure, the origin of the condition causing negative coercive force, and analyzing the complex condition of magnetic dipole rotation with theoretical simulation. We have produced phase-diagrams by the relation between the magnetic interactions and the magnitude of critical magnetic field strength determined, and simulate results for discussing the influence of the interactions between magnetic domains in nano-structures hysteresis. Yue-Lin Huang 黃玉林 2009 學位論文 ; thesis 128 zh-TW |
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碩士 === 國立東華大學 === 應用物理研究所 === 98 === In our previous research, with SQUID measurement, we found and confirmed magnetism of Ge nano-structure with SiO2 caped behaved specially. The result is obviously different from the diamagnetism behavior of Ge bulk. Our primary goal is providing an effective measurement method with surface magnetic sensitivity by construct an automatic MOKE (Magneto-Optical Kerr Effect) system, for reviewing the physical model we set up based on the results of SQUID measurement.
We are focusing in further exploration of magnetic interactions between these kinds of nano-structure, the origin of the condition causing negative coercive force, and analyzing the complex condition of magnetic dipole rotation with theoretical simulation. We have produced phase-diagrams by the relation between the magnetic interactions and the magnitude of critical magnetic field strength determined, and simulate results for discussing the influence of the interactions between magnetic domains in nano-structures hysteresis.
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author2 |
Yue-Lin Huang |
author_facet |
Yue-Lin Huang Shu-Fan Yeh 葉書帆 |
author |
Shu-Fan Yeh 葉書帆 |
spellingShingle |
Shu-Fan Yeh 葉書帆 Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
author_sort |
Shu-Fan Yeh |
title |
Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
title_short |
Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
title_full |
Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
title_fullStr |
Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
title_full_unstemmed |
Construction of an automatic MOKE system and analysis of magnetic hysteresis measured on nanostructures |
title_sort |
construction of an automatic moke system and analysis of magnetic hysteresis measured on nanostructures |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/36613690855382806210 |
work_keys_str_mv |
AT shufanyeh constructionofanautomaticmokesystemandanalysisofmagnetichysteresismeasuredonnanostructures AT yèshūfān constructionofanautomaticmokesystemandanalysisofmagnetichysteresismeasuredonnanostructures AT shufanyeh cíguāngkēěrxiàoyīngyízhījiàshèjínàimǐjiégòuzhōngdecízhìliàngcèyǔfēnxī AT yèshūfān cíguāngkēěrxiàoyīngyízhījiàshèjínàimǐjiégòuzhōngdecízhìliàngcèyǔfēnxī |
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