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一种全光开关及任意比能量输出光分束器的设计

廖清华 张旋 夏全 于天宝 陈淑文 刘念华

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一种全光开关及任意比能量输出光分束器的设计

廖清华, 张旋, 夏全, 于天宝, 陈淑文, 刘念华

A design for all-optical switch and arbitrary proportion of energy output beam splitter

Liao Qing-Hua, Zhang Xuan, Xia Quan, Yu Tian-Bao, Chen Shu-Wen, Liu Nian-Hua
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  • 基于光子晶体非线性Kerr效应设计了一种结构简单的任意比能量输出光分束器, 通过控制抽运光的强度来控制端口能量输出比. 该结构还可以实现控制光传输的动态开关作用, 并且具有插入损耗低、无串扰、信号光的开/关两个状态下的透射率相差非常大的特点, 因此该光开关具有很高的开关比.
    According to the nonlinear Kerr effect of photonic crystal, we design a simple structure with arbitrary proportion of energy output, which can be controlled by the pump intensity. At the same time, the structure can also realize the dynamic control of optical switch function, and has low insertion loss, crosstalk, two states of the signal light on/off. Therefore the light switch is of high efficiency.
    • 基金项目: 集成光电子国家重点实验室(半导体研究所)开放课题、江西省自然科学基金(批准号:2008GZW0006)和江西省教育厅科学研究课题(批准号:2007-59,GJJ08066)资助的课题.
    • Funds: Project supported by the Open Project of the State Key Laboratory on Integrated Optoelectronics from Institute of Semiconductors, Chinese Academy of Sciences, the Natural Science Foundation of Jiangxi Province, China (Grant No. 2008GZW0006), and the Research Project from Department of Education of Jiangxi Province, China (Grant Nos. 2007-59, GJJ08066).
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    Johnson P M, Koenderink A F, Vos W L 2002 Phys. Rev. B 66 081102(R)

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    Chen L X, Kim D 2003 Opt. Commun. 218 19

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    Chen L X, Deng X X, Ding W Q, Zhang Y, Liu S T 2002 Chin. Phys. Lett. 19 798

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    Yanik M F, Fan S, Soijacic M 2003 Appl. Phys. Lett. 83 2739

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    Villeneuve P R, Abrams D S, Fan S, Joannopoulos J D 1996 Opt. Lett. 21 2017

    [9]

    Locatelli A, Modotto D, Paloschi D, Angelis C D 2004 Opt. Commun. 237 97

    [10]

    Wang X, Kempa K, Ren Z F, Kimball B 2004 Appl. Phys. Lett. 84 1817

    [11]

    Pereira S, Chak P, Sipe J E 2002 J. Opt. Soc. Am. B 19 2191

    [12]

    Taflove A, Hagness S C 2000 Computational Electrodynamics: The Finite-Difference Time-Domain Method (2nd Ed.) (Norwood: Artech House)

    [13]

    Rahmati A T, Granpayeh N 2010 Optik: Int. J. Light Electron Opt. 121 1631

    [14]

    Guo H, Liao Q H, Yu T B, Chen S W, Huang Y Z 2011 Moden Phys. Lett. B 25 1963

    [15]

    Zhang X, Chen S W, Liao Q H, Yu T B, Liu N H, Huang Y Z 2011 Chin. Phys. Lett. 28 084201

    [16]

    Zhang X, Liao Q H, Yu T B, Liu N H, Huang Y Z 2012 Opt. Commun. 285 274

    [17]

    Tran P 1995 Phys. Rev. B 52 10673

  • [1]

    Scalora M, Dowling J P, Bowden C M, Bloemer M J 1994 Phys. Rev. Lett. 73 1368

    [2]

    Tran P 1997 J. Opt. Soc. Am. B 14 2589

    [3]

    Tran P 1996 Opt. Lett. 21 1138

    [4]

    Johnson P M, Koenderink A F, Vos W L 2002 Phys. Rev. B 66 081102(R)

    [5]

    Chen L X, Kim D 2003 Opt. Commun. 218 19

    [6]

    Chen L X, Deng X X, Ding W Q, Zhang Y, Liu S T 2002 Chin. Phys. Lett. 19 798

    [7]

    Yanik M F, Fan S, Soijacic M 2003 Appl. Phys. Lett. 83 2739

    [8]

    Villeneuve P R, Abrams D S, Fan S, Joannopoulos J D 1996 Opt. Lett. 21 2017

    [9]

    Locatelli A, Modotto D, Paloschi D, Angelis C D 2004 Opt. Commun. 237 97

    [10]

    Wang X, Kempa K, Ren Z F, Kimball B 2004 Appl. Phys. Lett. 84 1817

    [11]

    Pereira S, Chak P, Sipe J E 2002 J. Opt. Soc. Am. B 19 2191

    [12]

    Taflove A, Hagness S C 2000 Computational Electrodynamics: The Finite-Difference Time-Domain Method (2nd Ed.) (Norwood: Artech House)

    [13]

    Rahmati A T, Granpayeh N 2010 Optik: Int. J. Light Electron Opt. 121 1631

    [14]

    Guo H, Liao Q H, Yu T B, Chen S W, Huang Y Z 2011 Moden Phys. Lett. B 25 1963

    [15]

    Zhang X, Chen S W, Liao Q H, Yu T B, Liu N H, Huang Y Z 2011 Chin. Phys. Lett. 28 084201

    [16]

    Zhang X, Liao Q H, Yu T B, Liu N H, Huang Y Z 2012 Opt. Commun. 285 274

    [17]

    Tran P 1995 Phys. Rev. B 52 10673

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  • PDF下载量:  614
  • 被引次数: 0
出版历程
  • 收稿日期:  2012-07-23
  • 修回日期:  2012-09-03
  • 刊出日期:  2013-02-05

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