Surface plasmon polaritons based optical directional coupler

被引:0
作者
HuaWei Zhao
XuGuang Huang
JingTang Huang
机构
[1] South China Normal University,School of Information and Photoelectronic Science and Engineering
来源
Science in China Series G: Physics, Mechanics and Astronomy | 2008年 / 51卷
关键词
surface plasmon polariton (SPP); optical directional couple (ODC); finite difference time domain (FDTD);
D O I
暂无
中图分类号
学科分类号
摘要
As a basic optical device, the optical directional coupler (ODC) is basically used as optical splitters, optic switches and so on. A novel ODC employing surface plasmon polaritons (SPPs) is proposed for high integration. The finite difference time domain (FDTD) method is adopted to simulate and analyze its properties. Results show that the ODC proposed here follows the general regulations of a conventional dielectric ODC, but its transverse size is of nanoscale, which improves the optical integration greatly. For 1550 nm and 1310 nm input wavelengths, when the coupling region length (L) equals half of its coupling length, the Excess Loss is respectively 0.57 dB and 0.56 dB, which is practical in applications. So the research on the present ODC is of some practical importance.
引用
收藏
相关论文
共 37 条
[1]  
Huang T. C.(1992)Directional coupler optical switch constructed from field-induced waveguides Electr Lett 28 2288-2289
[2]  
Simonis G. J.(2001)A design method to achieve wide wavelength-flattened responses in the directional coupler-type optical power splitters J Lightwave Tech 19 1705-1715
[3]  
Coldren L. A.(1991)Optical wavelength filter with tapered couplers IEEE Photon Tech Lett 3 809-812
[4]  
Kishionka K.(2003)Simulations of nanometric optical circuits based on surface plasmon polariton gap waveguide Appl Phys Lett 82 1158-266
[5]  
Huang W. P.(2004)Simulation of practical nanometric optical circuits based on surface plasmon polariton gap waveguides Opt Exp 13 256-1994
[6]  
Little B. E.(2005)Surface plasmon polariton propagation in nanoscale metal gap waveguides Opt Lett 29 1992-830
[7]  
Chadhuri S. K.(2005)Bends and splitters in metal-dielectric-metal subwavelength plasmonic waveguides Appl Phys Lett 87 131102-3653
[8]  
Tanaka K.(2003)Surface plasmon subwavelength optics Nature 424 824-1163
[9]  
Tanaka M.(2001)Holography with surface-plasmon-coupled waveguide modes Appl Opt 40 3649-842
[10]  
Tanaka K.(2005)Plasmonics: Localization and guiding of electromagnetic energy in metal/dielectric structures J Appl Phys 98 011101-9655