期刊文献+

光在一维周期结构中的分布和局域化 被引量:20

Light Distribution and Localization in One-dimensional Periodic Structure
在线阅读 下载PDF
导出
摘要 运用传播矩阵对不同种类的一维周期结构(periodicstructure,PS)中的光场分布和局域化进行了理论分析.结果表明:当光以禁带频率入射到PS上时,绝大部分光被反射,在PS中是以衰减的驻波形式存在的.需要强调的是,当光以禁带带边频率入射时,光场在PS中有显著的局域化,在介质中引入适当的缺陷可以极大地增加这种局域化程度.另外,当光从掺杂有特定缺陷层的PS的左右两个不同界面入射时,可引起光场在PS中不同的分布,这对通过光的非线性调制实现的光学二极管非常有用.在线性吸收的PS中光强随光进入介质的厚度及消光系数的增加迅速衰减. The light distribution and localization in different kinds of one dimensional periodic structure (PS) are studied by using the method of transfer matrix. The results show that when light incident with the band gap frequency, most part of light is reflected and an attenuated standing wave exists in the PS. The emphasis is placed on the localization of light with the frequency of band gap edge in the PS. By introducing appropriate defect layers inside the PS, light localization can be extremely enhanced. In addition, the different distributions induced by light incident from the left side and from the right side of special PS embedded with definite defect layers would be very useful for the optical diode realization through light nonlinear modulation. In absorptive PS, light field attenuates rapidly with the increase of depth and extinction coefficient.
出处 《光子学报》 EI CAS CSCD 北大核心 2005年第7期1086-1089,共4页 Acta Photonica Sinica
基金 国家自然科学基金(编号:90201027 10374120) 广东省自然科学基金(编号:980278)资助
关键词 光分布 光的局域化 周期结构 传播矩阵 Light distribution Light localization Periodic structure(PS) Transfer matrix
  • 相关文献

参考文献16

  • 1肖万能,赵霁,王维江,李润华,周建英.周期多层量子阱结构的光吸收特性与电场分布[J].物理学报,2003,52(9):2293-2297. 被引量:9
  • 2Yariv A,Yeh P. Optical waves in crystals: Propagation and control of laser radiation. New York: John Wiley &Sons, Inc. , 1984.
  • 3Miyazaki H, Jimba Y, Watanabe T. Multiphotonic lattices and Stark localization of electromagnetic fields in one dimension. Phys Rev (A), 1996,53(4): 2877~2880.
  • 4Bullock D L, Shih Chun-Ching, Margulies R S. Photonic band structure investigation of two-dimensional Bragg reflector mirrors for semiconductor laser mode control. JOpt Soc Am (B), 1993,10(2): 399~403.
  • 5John S, Quang T. Resonant nonlinear dielectric response in a photonic band gap material. Phys Rev Lett, 1996,76(14): 2484~2487.
  • 6Tran P. Optical limiting and switching of short pulses by use of an nonlinear photonic band gap structure with a defect. J Opt Soc Am (B) ,1997,14(10): 2589~2595.
  • 7Chen Lixue, Deng Xiaoxu, Ding Weiqiang, et al. Low threshold bistable switching by the nonlinear onedimensional photonic crystal. Chin Phys Lett, 2002, 19(6): 798~800.
  • 8Scalora M, Dowling J P, Bowden C M, et al. Optical limiting and switching of ultrashort pulses in nonlinear photonic band gap materials. Phys Rev Lett, 1994, 73(10): 1368~1371.
  • 9Fogel I S, Bendickson J M, Tocci M D,et al. Spontaneous emission and nonlinear effects in photonic bandgap materials.Pure Appl Opt, 1998,7(2): 393~407.
  • 10Xiao W N, Zhou J Y, Prineas J P. Storage of ultrashort optical pulse in a resonantly absorbing Bragg reflector.Optics Express, 2003,11 (24): 3277~3283.

二级参考文献45

  • 1[1]Yablonovitch E.Inhibited spontaneous emission in solid-state physics and electronics.Phys Rev Lett,1987,58(20): 2059~2062
  • 2[2]John S. Strong localization of photons in certain disordered dielectric superlattices.Phys Rev Lett,1987,58(23): 22486~2489
  • 3[3]Qiao F,Zhang C,Wang J,et al. Photonic quantum-well structures:Multiple channeled filtering phenomena.Appl Phys Lett, 2000,77(23):3698~3702
  • 4[4]Lan S,Nishikawa S,Wada O. Leveraging deep photonic band gaps in photonic crystal impurity bands.Appl Phys Lett,2001,78(15):2101~2103
  • 5[5]Zhu S Y,Liu N H,Chen H,et al.Time delay of light propagaton defect modes of one-dimensional photonic band-gap structures.Opt Commun,2000,174(2):139~143
  • 6[6]Joannopoulos J D,Meade R D,Winn J N.Photonic crystals, Princeton University Press,Princeton,NJ,1995:19~32
  • 7[8]Yablonovitch E,Gmitter T G. Donor and acceptor modes in photonic band structure.Phys Rev Lett, 1991,67(24):3380~3383
  • 8[9]Liu N H. Defect modes of stratified dielectric media.Phys Rev(B),1997,55(7):4097~4100
  • 9[11]Lan S,Nishikawa S,Sugimoto Y.Phys Rev(B), 2002,65(16):165208-1~09
  • 10[12]Lan S,Nishikawa S,lshikawa H,et al.Design of impurity band-based photonic crystal waveguides and delay lines for ultrashort optical pulse.J Appl Phys, 2001,90(9):4321~4327

共引文献50

同被引文献137

引证文献20

二级引证文献178

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