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研究生: 連健宇
Lien, Chien-Yu
論文名稱: 利用光脈衝存取之全光學開關的理論研究
Theoretical Study of All-Optial Switches Utilizing Storage and Retrieval Light Pulses
指導教授: 余怡德
Yu, Ite Albert
口試委員:
學位類別: 碩士
Master
系所名稱: 理學院 - 物理學系
Department of Physics
論文出版年: 2006
畢業學年度: 94
語文別: 英文
論文頁數: 50
中文關鍵詞: 光儲存光開關光速減慢雙光子躍遷
外文關鍵詞: Photon switching, EIT, Slow light, Light storage, Two-photon transition
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  • "Photon Switching by Quantum Interference" which was proposed by Harris and Yamamoto in 1998[1] introduced a
    four-state atomic system that an additional light field besides the three-state EIT[2] system was added to destroy the quantum interference of EIT system. The scheme and theoretical study were introduced in it. And in this thesis, we go a step further to theoretically study this optical switches utilizing storage and retrieval light pulses[3]. We found that the theoretical prediction did not match the experimental results properly, hence the study of how to revise it was developed. The required theoretical analysis equation and simulation results are all involved in this thesis.


    Title Page Abstract Table of Contents List of Figures 1 Introduction and Overview 2 Electromagnetically Induced Transparency 2.1 Introduction 2.2 Slow-Light and Light-Storage 3 Photon Switching Utilizing Light Pulse Storage and Retrieval 3.1 Introduction 3.2 Scheme of Photon Switching Energy Levels 3.3 Photon-Switching Experiment 4 Theoretical Analysis of Photon Switching 4.1 Introduction 4.2 Optical Bloch Equation 4.3 Maxwell-Schr□odinger Equation 4.4 Phase Mismatching 4.4.1 Sum-Frequency Generation 4.4.2 Light Storage and Retrieval with Phase Mismatching 5 Simulation of Photon Switching 5.1 Analytically Describing Light-Storage Photon Switching 5.2 Numerical Simulation 5.2.1 Simulation of Photon Switching without Light Storage 5.2.2 Simulation with Light Storage and Phase Mismatching 6 Conclusion and Outlook 6.1 Conclusion 6.2 Outlook Appendix: Slow-Light Two-Photon Transitions A.1 Introduction A.2 Experimental Arrangement A.3 Spontaneous Decay Rates in Different Decay Paths A.4 Numerical Simulation of Two-photon Transition Rate A.5 Conclusion Bibliography

    [1] S. E. Harris and Y. Yamamoto, "Photon switching by quantum interference,"
    Phys. Rev. Lett., vol. 81, pp. 3611{3614, Oct 1998.
    [2] S. E. Harris, "Electromagnetically induced transparency," Physics Today, vol. 50,
    pp. 36{42, 1997.
    [3] D. F. Phillips, A. Fleischhauer, A. Mair, R. L. Walsworth, and M. D. Lukin,
    "Storage of light in atomic vapor," Phys. Rev. Lett., vol. 86, pp. 783{786, Jan
    2001.
    [4] C. Liu, Z. Dutton, C. H. Behroozi, and L. V. Hau, "Observation of coherent opti-
    cal information storage in an atomic medium using halted light pulses," Nature,
    vol. 409, pp. 490{493, Jan. 2001.
    [5] L. V. Hau, S. E. Harris, Z. Dutton, and C. H. Behroozi, "Light speed reduction to
    17 metres per second in an ultracold atomic gas," Nature, vol. 397, pp. 594{598,
    Feb. 1999.
    [6] M. Fleischhauer and M. D. Lukin, "Dark-state polaritons in electromagnetically
    induced transparency," Phys. Rev. Lett., vol. 84, pp. 5094{5097, May 2000.
    [7] C. Y. Wang, Y. F. Chen, S. C. Lin, W. H. Lin, P. C. Kuan, and I. A. Yu,
    "Low-light-level all-optical switching," Opt. Lett., vol. 31, pp. 2350{2352, 2006.
    [8] M. S. Scully, M. O. & Zubairy, Quantum Optics. Cambridge Univ. Press, 1997.
    [9] R. W. Boyd, Nonlinear Optics. Academic Press, 1992.
    [10] Y.-F. Chen, C.-Y. Wang, S.-H. Wang, and I. A. Yu, "Low-light-level cross-phase-
    modulation based on stored light pulses," Phys. Rev. Lett., vol. 96, p. 043603,
    Feb 2006.
    [11] Y. F. Chen, Z. H. Tsai, Y. C. Liu, and I. A. Yu, "Low-light-level photon switching
    by quantum interference," Opt. Lett., vol. 30, pp. 3207{3209, 2005.
    [12] D. A. Braje, V. Balic, S. Goda, G. Y. Yin, and S. E. Harris, "Frequency mixing
    using electromagnetically induced transparency in cold atoms," Physical Review
    Letters, vol. 93, no. 18, p. 183601, 2004.
    [13] V. Balic, D. A. Braje, P. Kolchin, G. Y. Yin, and S. E. Harris, "Generation of
    paired photons with controllable waveforms," Physical Review Letters, vol. 94,
    no. 18, p. 183601, 2005.
    [14] S.-H. Wang, "Study of the double-species magneto-optical trap," Master's thesis,
    National Tsing-Hua University, 2005.
    [15] S. E. Harris and L. V. Hau, "Nonlinear optics at low light levels," Phys. Rev.
    Lett., vol. 82, pp. 4611{4614, Jun 1999.

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