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负折射介质中超短脉冲的反常分裂现象

Anomalous splitting of ultrashort pulse in metamaterials
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摘要 对超短脉冲在负折射介质中的传输特性进行了研究,着重分析其不同于常规介质的反常脉冲分裂现象。结果表明:由于负的折射率影响,介质将通过反常群速度色散与自散焦非线性的相互作用机理来诱导脉冲的对称分裂。同时,分析由色散磁导率所导致的可控自陡效应对脉冲分裂的影响,发现负折射介质中正负的自陡效应都会引脉冲非对称分裂。其中负的自陡效导致脉冲裂变后其后沿比前沿高,这与常规介质自陡效应(恒为正)情形相同;而负折射介质正的自陡效应对脉冲分裂影响刚好与前者相反,即裂变后脉冲后沿比前沿低。 The properties of ultrashort pulse propagation in metamaterials (MMs) are investigated, and special attention is paid to the anomalous phenomena of pulse splitting inaccessible in ordinary materials. It is found that the interaction of anomalous group velocity dispersion(GVD) and self-defocus effect will lead to the symmetric pulse splitting due to negative index in MMs. In addition, we have investigated the influence of controllable self-steepening(SS) induced by dispersive magnetic permeability on the pulse splitting. It is shown that both positive and negative SS lead to the asymmetric pulse splitting in MMs. Analysis shows that negative SS effect gives rise to the trailing pulse being higher than the leading pulse, same as the corresponding case in ordinary material; positive SS in MMs causes the opposite of the previous case, namely, the trailing pulse being lower than the leading pulse.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2013年第2期508-512,共5页 High Power Laser and Particle Beams
基金 湖南省高校科技创新团队支持计划项目(湘教通[2010]212号) 湖南省自然科学基金项目(12JJ4063) 湖南第一师范学院重点建设学科--《教育技术学》学科项目 湖南省科技计划项目(2010GK3049)
关键词 负折射介质 超短脉冲传输 脉冲分裂 自陡 metamaterials ultrashort pulse propagation pulse splitting self-steepening
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参考文献25

  • 1Silberberg Y. Collapse of optical beams[J].Optics Letters,1990,(22):1282-1284.
  • 2Ranka J K,Gaeta A L. Breakdown of the slowly varying envelope approximation in the self-focusing of ultrashort pulses[J].Optics Letters,1998,(07):534-536.doi:10.1364/OL.23.000534.
  • 3Rothenberg J E. Space-time focusing:breakdown of the slowly varying envelope approximation in the self-focusing of femtosecond pulses[J].Optics Letters,1992,(19):1340-1342.
  • 4Zozulya A A,Diddams S A,Clement T S. Investigations of nonlinear femtosecond pulse propagation with the inclusion of Raman,shock,and third-order phase effects[J].Physical Review A,1998,(04):3303-3310.
  • 5Couairon A,Mysrowicz A. Femtosecond filamentation in transparent media[J].Physics Reports-Review Section of Physics Letters,2007,(02):47-189.
  • 6Brabec T,Krausz F. Nonlinear optical pulse propagation in the single-cycle regime[J].Physical Review Letters,1997,(17):3282-3285.doi:10.1103/PhysRevLett.78.3282.
  • 7唐永林,陈建国,李大义,康俊,张科军.势函数分析高斯光束在对数饱和非线性介质中的传播[J].强激光与粒子束,1999,11(2):149-153. 被引量:3
  • 8黄毅,郭旗.强非局域克尔介质中光束传输的变分问题[J].强激光与粒子束,2005,17(5):655-659. 被引量:14
  • 9Pendry J B. Negative refraction makes a perfect lens[J].Physical Review Letters,2000,(18):3966-3969.doi:10.1103/PhysRevLett.85.3966.
  • 10Pendry J B,Schurig D,Smith D R. Controlling electromagnetic fields[J].Science,2006.1780-1782.

二级参考文献53

  • 1谢逸群,郭旗.非局域克尔介质中空间光孤子的相互作用[J].物理学报,2004,53(9):3020-3024. 被引量:51
  • 2郭旗,许超彬.偏离束腰入射对非局域非线性介质中高斯光束演化的影响[J].物理学报,2004,53(9):3025-3032. 被引量:41
  • 3黄毅,郭旗.强非局域克尔介质中光束传输的变分问题[J].强激光与粒子束,2005,17(5):655-659. 被引量:14
  • 4Boyd R W,Lukishova S G,Shen Y R.Self-focusing:past and present[M].Berlin:Springer,2009.
  • 5Shen Y R.The Principles of nonlinear optics[M].New York:Wiley,1984.
  • 6Veselago V G.The electrodynamics of substances with simultaneously negative values of ε and μ[J].Sov Phys Usp,1968,10(4):509-514.
  • 7Pendry J B,Shurig D,Smith S R.Controlling electromagnetic fields[J].Science,2006,312(5781):1780-1782.
  • 8Pendry J B.Negative refraction makes a perfect lens[J].Phys Rev Lett,2000,85(18):3966-3969.
  • 9Smith D R,Padilla W J,Vier D C,et al.Composite medium with simultaneously negative permeability and permittivity[J].Phys Rev Lett,2000,84(18):4184-4187.
  • 10Shalaev V M,Cai W,Chettiar U K,et al.Negative index of refraction in optical metamaterials[J].Opt Lett,2005,30(24):3356-3358.

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