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有外加电源的串联光折变晶体回路中的独立空间全息-哈密顿屏蔽孤子对

汪盛烈 蔡欣 刘劲松

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有外加电源的串联光折变晶体回路中的独立空间全息-哈密顿屏蔽孤子对

汪盛烈, 蔡欣, 刘劲松

Separate holographic-Hamiltonian screening soliton pairs in a biased series photorefractive crystal circuit

Wang Sheng-Lie, Cai Xin, Liu Jin-Song
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  • 在由两块垂直于光轴两端面镀上电极的光折变晶体和一个外加电源组成的串联光折变晶体回路中, 在适当的条件下可以形成独立空间全息-哈密顿屏蔽孤子对. 这种孤子对共有四种类型:明-明、暗-暗、明-暗以及暗-明. 当入射光束的空间展宽尺寸远小于晶体宽度时, 孤子对中的哈密顿暗孤子可以通过光感应电流影响另一个孤子, 而哈密顿明孤子和全息孤子则不能影响另一孤子.
    Separate holographic-Hamiltonian screening soliton pairs are predicted in a biased series photorefractive crystal circuit consisting of two photorefractive crystals connected electronically by electrode leads in a chain with a voltage source. The existence of four types of the separate soliton pairs:dark-dark, bright-dark, dark-bright and bright-bright, in such a circuit is proved. Under the limit that the spatial extent of the optical wave is much less than the width of the crystal, the Hamiltonian dark soliton can affect the other soliton by the light-induced current whereas the Hamiltonian bright soliton and holographic soliton cannot affect the other soliton in the soliton pair.
      通信作者: 刘劲松, jsliu4508@vip.sina.com
    • 基金项目: 国家自然科学基金(批准号:10174025,10574051)资助的课题.
      Corresponding author: Liu Jin-Song, jsliu4508@vip.sina.com
    • Funds: Project supported by the National Natural Science Foundations of China (Grant Nos.10174025,10574051).
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  • [1]

    Castillo M D I,Aguilar P A M,Sanchez-Mondragon J J,Stepanov 1994 Appl.Phys.Lett.64 408

    [2]
    [3]

    Christodoulides D N,Carvalho M I 1995 J.Opt.Soc.Am.B 12 1628

    [4]
    [5]

    Segev M,Valley G C,Crosignani B,Porto P D,Yariv A 1994 Phys.Rev.Lett.73 3211

    [6]
    [7]

    Shih M F,Segev M,Valley G C,Salamo G,Crosignai B,Porto P D 1995 Electron.Lett.31 826

    [8]

    Segev M,Valley G C,Bashaw M C,Taya M,Fejer M M 1997 J.Opt.Soc.Am.14 1772

    [9]
    [10]

    She W L,Lee K,Lee W K 1999 Phys.Rev.Lett.83 3182

    [11]
    [12]
    [13]

    Taya M,Bashaw M,Fejer M M,Segev M,Valley G C 1995 Phys.Rev.A 52 3095

    [14]
    [15]

    Valley G C,Segev M,Crosignani B,Yariv A,Fejer M M,Bashaw M C 1994 Phys.Rev.A 50 R4457

    [16]
    [17]

    Fazio E,Renzi F,Rinaldi R,Bertolotti M,Chauvet M,Ramadan W,Petris A,Vlad V I 2004 Appl.Phys.Lett.85 2193

    [18]
    [19]

    Liu J S,Hao Z H 2002 Chin.Phys.11 254

    [20]
    [21]

    Cohen O,Carmon T,Segev M 2002 Opt.Lett.27 2031

    [22]
    [23]

    Liu J S 2003 Opt.Lett.28 2237

    [24]

    Liu J S 2004 Acta Phys.Sin.53 3014 (in Chinese) [刘劲松 2004 物理学报 53 3014]

    [25]
    [26]
    [27]

    Liu J S,Zhang H L,Zhang G Y,Wang C 2006 Chin.Phys.15 394

    [28]
    [29]

    Liu J S,Du Z M 2005 Acta Phys.Sin.54 2739 (in Chinese) [刘劲松,杜泽明 2005 物理学报 54 2739]

    [30]
    [31]

    Liu J S 2003 Phys.Rev.E 68 026607

    [32]

    Chen Z,Segev M,Coskun T H,Christodoulides D N,Kivshar Y S 1997 J.Opt.Soc.Am.B 14 3066

    [33]
    [34]

    Chen Z G,Mitchell M,Shih M,Segev M,Garrett M H,Valler G C 1996 Opt.Lett.21 629

    [35]
    [36]
    [37]

    Christodoulides D N,Singh S R,Carvalho M I 1996 Appl.Phys.Lett.68 1763

    [38]
    [39]

    Kos K,Meng H X,Salamo G,Shih M,Segev M,Valley G C 1996 Phys.Rev.E 53 R4330

    [40]

    Chen Z,Acks M,Ostrovskaya E A,Kivshar Y S 2000 Opt.Lett.25 417

    [41]
    [42]

    Krolikowski W,Holmstrom S A 1997 Opt.Lett.22 369

    [43]
    [44]

    Mamaev A V,Saffman M,Zozulya A A 1998 J.Opt.Soc.Am.B 15 2079

    [45]
    [46]
    [47]

    Shih M,Segev M 1996 Opt.Lett.21 1538

    [48]
    [49]

    Liu J S 2002 Phys.Lett.A 300 213

    [50]

    Liu J S,Hao Z H 2003 Chin.Phys.12 1124

    [51]
    [52]
    [53]

    Yeh P 1989 IEEE J.Quantum Electron.23 484

计量
  • 文章访问数:  6155
  • PDF下载量:  475
  • 被引次数: 0
出版历程
  • 收稿日期:  2011-05-31
  • 修回日期:  2011-06-17
  • 刊出日期:  2012-03-05

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