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  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 物理學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29562
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor石明豐
dc.contributor.authorHsuan-Huai Chenen
dc.contributor.author陳宣槐zh_TW
dc.date.accessioned2021-06-13T01:10:30Z-
dc.date.available2007-07-27
dc.date.copyright2007-07-27
dc.date.issued2007
dc.date.submitted2007-07-23
dc.identifier.citation[1] A.E. Siegman, Lasers, University Science Books, Mill Valley, California, 1968.
[2] A. Einstein, B. Podolsky, N. Rosen, Phys. Rev. 47, 777 (1935)
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[10] A. Vaziri, G. Weihs, and A. Zeilinger, Phys. Rev. Lett. 89, 240401 (2002).
[11] A. Mair, A. Vaziri, G. Weihs, and A. Zeilinger, Nature 412, 313 (2001).
[12] N.K. Langford, R. B. Dalton, M. D. Harvey, J. L. O’Brien, G. J. Pryde, A. Gilchrist, S. D. Bartlett, A. G. White, Phys. Rev. Lett. 93, 053601 (2004).
[13] X. Xue, H. Wei, and A. G. Kirk, Opt. Lett. 26, 1746 (2001).
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[17] N. R. Heckenberg, R. Mcduff, C. P. Smith, H. Rubinsztein-Dunlop, M. J. Wegener, Optical and Quantum Electrnics 24, S951 (1992).
[18] H. He, N. R. Heckenberg, H. Rubinsztein-Dunlop, Journal of Morden Optics 42, 217 (1995).
[19] N. Kim, Opt. Commun. 105, 1 (1994).
[20] A. A. Malyutin, Proc. SPIE 4900, 908 (2002).
[21] A. A. Malyutin, Quantim Electronics 34(2), 165 (2004).
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29562-
dc.description.abstract「貝爾不等式」是一道古典定律遵守,但量子理論卻會違背的限制式。經由實驗貝爾不等式的正確性,可知物質「在測量前」是否就具有確切的物理特性,其特性又是否會受到遙遠事件的影響。一般這樣的實驗都是利用光的偏振方向,也就是光子的「內秉」性質來測試二維的貝爾不等式。然而,我們希望能利用「厄米高斯模態」這樣的「空間」模態來達成更高維度的實驗。為了達成這個目的,在這篇論文中我們將討論如何建構厄米高斯模態的測量裝置。此種裝置可視為是多出口的「模態分離器」,正如同「偏極化分光器」能將不同極化方向的光分離一樣。構成此分離器的關鍵是一種名叫「模態相位延遲器」的元件,它的效果類似於「波片」,能對不同的厄米高斯模態產生對應的相位延遲。將適當的模態相位延遲器裝置在由一群「馬赫任德干涉儀」所組成的二元樹結構中,就能完成我們所要的模態分離器。另外,我們使用電腦全像技術產生已知的複合模態,利用這些光源來測試裝置的分離效果,並搭配電腦模擬來驗證這套構想的可信度。zh_TW
dc.description.abstractThe experiment of Bell’s inequality (BI) is one designed to test whether the real world obeys the principle of “local realism”, which states that objects have definite properties independent of measurements and other events far away. While this experiment is usually based on the intrinsic property of photons, i.e. polarization, we attempt to accomplish it based on the spatial features of photons, such as Hermite-Gaussian (HG) modes. For this purpose, analyzers which can be used to measure the HG modes of photons are needed.
In this thesis, we provide the schemes of these analyzers, which can separate HG modes to different ports just as a polarized beam splitter does. To construct the analyzers, we also introduce another kind of devices called “mode retarders”, which are analogous to wave plates because they introduce phase differences between corresponding HG modes. By coupling these mode retarders with sets of Mach-Zehnder interferometers (MZIs) in the configuration of a binary tree, one can perform measurements on passing light in the HG basis. Several sources are produced by computer-generated holograms (CGHs) to demonstrate these schemes experimentally, while the corresponding simulations are also made to confirm our predictions in the more precise way.
en
dc.description.provenanceMade available in DSpace on 2021-06-13T01:10:30Z (GMT). No. of bitstreams: 1
ntu-96-R94222014-1.pdf: 4693289 bytes, checksum: 9264ca191970fb033d6a175d2febec2c (MD5)
Previous issue date: 2007
en
dc.description.tableofcontentsAbstract i
Figure List iv
Table List v
CHAPTER 1 INTRODUCTION 1
1.1 Hermite-Gaussian modes 1
1.2 Bell’s inequality and measurement of HG modes 4
1.3 Reviews and organization of this thesis 6
CHAPTER 2 GENERATION OF HYBRID HERMITE-GAUSSIAN MODES 8
2.1 Laguerre-Gaussian modes and diagonal HG modes 8
2.2 Computer-generated holograms 10
2.2.1 Efficiency of holograms 12
2.2.2 Analysis of hologram-generated beams 14
CHAPTER 3 SEPARATION OF HERMITE-GAUSSIAN MODES 20
3.1 General scheme 20
3.2 Parity splitting 22
3.2.1 Introduction 22
3.2.2 Experiments and simulations 26
3.3 Mode splitting within the same order 31
3.3.1 Introduction 31
3.3.2 Astigmatic mode retarder 32
3.3.3 Experiments and simulations 37
3.4 Mode splitting according to different orders 39
3.4.1 Introduction 41
3.4.2 Experiments and simulations 42
CHAPTER 4 SUMMARY AND FUTURE WORKS 46
4.1 Summary 46
4.2 Future works 47
Abbreviation Table 48
Bibliography 49
dc.language.isoen
dc.subject電腦全像術zh_TW
dc.subject厄米高斯模態zh_TW
dc.subject貝爾不等式zh_TW
dc.subject模態相位延遲器zh_TW
dc.subject模態分離器zh_TW
dc.subject馬赫任德干涉儀zh_TW
dc.subjectHermite-Gaussian modeen
dc.subjectmode splitteren
dc.subjectMach-Zehnder interferometeren
dc.subjectcomputer-generated hologramen
dc.subjectmode retarderen
dc.title厄米高斯光束的模態分離zh_TW
dc.titleSeparation of Hermite-Gaussian Laser Modesen
dc.typeThesis
dc.date.schoolyear95-2
dc.description.degree碩士
dc.contributor.oralexamcommittee蔡定平,曹培熙
dc.subject.keyword厄米高斯模態,貝爾不等式,模態相位延遲器,模態分離器,馬赫任德干涉儀,電腦全像術,zh_TW
dc.subject.keywordHermite-Gaussian mode,mode retarder,mode splitter,Mach-Zehnder interferometer,computer-generated hologram,en
dc.relation.page50
dc.rights.note有償授權
dc.date.accepted2007-07-23
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept物理研究所zh_TW
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