期刊文献+

The interaction of in-band and in-gap lattice soliton trains in optically induced two-dimensional photonic lattices

The interaction of in-band and in-gap lattice soliton trains in optically induced two-dimensional photonic lattices
下载PDF
导出
摘要 We demonstrate the coherent interactions of lattice soliton trains, including in-band solitons (IBSs) and gap soliton trains (GSTs), in optically induced two-dimensional photonic lattices with self-defocusing nonlinearity. It is revealed that the π-staggered phase structures of the lattice soliton trains will lead to anomalous interactions. Solely by changing their initial separations, the transition between attractive and repulsive interaction forces or reversion of the energy transfer can be obtained. The ‘negative refraction' effect of the soliton trains on the interaction is also discussed. Moreover, two interacting IBSs can merge into one GST when attraction or energy transfer happens. We demonstrate the coherent interactions of lattice soliton trains, including in-band solitons (IBSs) and gap soliton trains (GSTs), in optically induced two-dimensional photonic lattices with self-defocusing nonlinearity. It is revealed that the π-staggered phase structures of the lattice soliton trains will lead to anomalous interactions. Solely by changing their initial separations, the transition between attractive and repulsive interaction forces or reversion of the energy transfer can be obtained. The ‘negative refraction' effect of the soliton trains on the interaction is also discussed. Moreover, two interacting IBSs can merge into one GST when attraction or energy transfer happens.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第6期393-397,共5页 中国物理B(英文版)
基金 Project supported by the Northwestern Polytechnical University (NPU) Foundation for Fundamental Research and the Doctorate Foundation of NPU (Grant No.CX200914)
关键词 soliton interaction in-band soliton gap soliton train photonic lattice soliton interaction, in-band soliton, gap soliton train, photonic lattice
  • 相关文献

参考文献29

  • 1Orzel C, Tuchman A K, Fenselau M L, Yasuda M and Kasevich M A 2001 Science 291 2386.
  • 2Yablonovich E 1987 Phys. Rev. Lett. 58 2059.
  • 3Christodoulides D N, Lederer F and Silberberg Y 2003 Nature 424 817.
  • 4Zhang P, Lou C, Liu S, Xiao F, Zhao J, Xu J and Chen Z 2008 Opt. Photonics News 19 25.
  • 5Eisenberg H S, Silberberg Y, Morandotti R, Boyd A R and Aitchison J S 1998 Phys. Rev. Lett. 81 3383.
  • 6Rosberg C R, Neshev D N, Sukhorukov A A and Kivshar Y S 2005 Opt. Left. 30 2293.
  • 7Liu S, Zhang P, Xiao F, Yang D and Zhao J 2009 Sci. Chin. Ser. G 52 747.
  • 8Liu S, Zhang P, Lou C, Xiao F and Zhao J 2009 J. Mod. Opt. 56 677.
  • 9Neshev D, Ostrovskaya E, Kivshax Y and Krolikowski W 2003 Opt. Lett. 28 710.
  • 10Zhang P, Liu S, Zhao J, Lou C, Xu J and Chen Z 2008 Opt. Lett. 33 878.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部