量子光学学报, 2012, 18 (4): 363, 网络出版: 2013-01-14   

槽深受sinc函数调制的表面等离子滤波器的传输特性

Propagation Properties of Surface Plasmonic Filter with SoltDepth Modulated by a Sinc Function
作者单位
山西大学物理电子工程学院, 山西 太原 030006
引用该论文

张高峰, 程雪莹, 薛文瑞. 槽深受sinc函数调制的表面等离子滤波器的传输特性[J]. 量子光学学报, 2012, 18(4): 363.

ZHANG Gao-feng, CHENG Xue-ying, XUE Wen-rui. Propagation Properties of Surface Plasmonic Filter with SoltDepth Modulated by a Sinc Function[J]. Acta Sinica Quantum Optica, 2012, 18(4): 363.

参考文献

[1] ZAYATS A V, SMOLYANINOV I I, MARADUDIN A A. Nano-optics of Surface Plasmon Polaritons [J]. Phys Rep, 2005, 408(3-4): 131-314.

[2] BARNES W L, DEREUX A, EBBESEN T W, et al. Surface Plasmon Subwavelength Optics[ J]. Nature, 2003, 424(6950): 824-830.

[3] OZBAY E. Plasmonics: Merging Photonics and Electronics at Nanoscale Dimensions [J]. Science, 2006, 311(5758): 189-193.

[4] BOZHEVOLNYI S I, VOLKOV VS, DEVAUX E, et al. Channel Plasmon Subwavelength Waveguide Components Including Interferometers and Ring Resonators [J]. Nature, 2006, 440(7083): 508-511.

[5] MAIER S A. Plasmonics: The Promise of Highly Integrated Optical Devices [J]. IEEE J Sel Topics Quant Electron, 2006, 12(6): 1671-1677.

[6] 段欣, 贾智鑫, 薛文瑞. 蝴蝶形中空表面等离子体波导的传输特性 [J]. 量子光学学报, 2010, 16(4): 3537-3541.

[7] GUO Y N, XUE W R, YANG R C, et al. Numerical Simulations of a Surface Plasmonic Waveguide with Three Air Cores [J]. Opt Exp, 2009, 17(14):11822-11833.

[8] XUE W R, GUO Y N, ZHANG W M. Modified Surface Plasmonic Waveguide Formed by Nanometric Parallel Lines [J]. Chin Phys B, 2010, 19(1): 17302-017302.

[9] TIAN J P, HAN S P, XUE W R. Theoretical Analysis of a Surface Plasmonic Waveguide with a Double-petal-shaped Air Core [J]. IEEE J Sel Topics Quant Electron, 2011, 17(4): 935-941.

[10] TIAN J P, XUE W R. Analysis of a Surface Plasmonic Waveguide of Three Circumscribed Circular Silver Rods [J]. IEEE J Quant Electron, 2011, 47(7): 920-927.

[11] ECONOMOU E. Surface Plasmons in Thin Films [J]. Phys Rev, 1969, 182: 539-554.

[12] VERONIS G, FAN S. Bends and Splitters in Metal-dielectric-metal Subwavelength Plasmonic Waveguides [J]. Appl Phys Lett, 2005, 87(13):131102-1-131102-3.

[13] HAN Z, HE S. Multimode Interference Effect in Plasmonic Subwavelength Waveguides and an Ultra-compact Power Splitter [J]. Opt Commun, 2007, 278: 199-203.

[14] 赵华伟, 黄旭光, 苏辉. 基于表面等等离波子的新型Y分支波导 [J]. 光学学报, 2007, 27(9): 1649-1652.

[15] HAN Z, ELEZZABI Y A, VAN V. Wideband Y-splitter and Aperture-assisted Coupler Based on Sub-diffraction Confined Plasmonic Slot Waveguides [J]. Appl Phys Lett, 2010, 96(13) : 131106-1-131106-3.

[16] 刘叶新, 陈晓文, 邢晓波. 具有调制功能的多模干涉型1×3分束器 [J]. 光学学报, 2005, 25(10): 1406-1410.

[17] WANG B, WANG G P. Surface Plasmon Polariton Propagation in Nanoscale Metal Gap Waveguides [J]. Opt Lett, 2004, 29(17) : 1992-1994.

[18] HAN Z, LIU L, FORSBERG E. Ultra-compact Directional Couplers and Mach-Zehnder Interferometers Employing Surface Plasmon Polaritons [J]. Opt Commun, 2006, 259: 690-695.

[19] PU M, YAO N, HU C, et al. Directional Coupler and Nonlinear Mach-Zehnder Interferometer Based on Metal-insulator-metal Plasmonic Waveguide [J]. Opt Express, 2010, 18(20) : 21030-21037.

[20] WANG T, WEN X, YIN C, et al. The Transmission Characteristics of Surface Plasmon Polaritons in Ring Resonator [J]. Opt Express, 2009, 17(26): 24096-24101.

[21] XIAO S, LIU L, QIU M. Resonator Channel Drop Filters in a Plasmon-polaritons Metal [J]. Opt Express, 2006, 14(7): 2932-2937.

[22] HOSSEINI A, MASSOUD Y. Nanoscale Surface Plasmon Based Resonator Using Rectangular Geometry [J]. Appl Phys Lett, 2007, 90(18): 181102-1-181102-3.

[23] LIU J Q, WANG L L, HE M D, et al. A Wide Bandgap Plasmonic Bragg Reflector [J]. Opt Express, 2008, 16(7): 4888-4894.

[24] GONG Y K, WANG L R, HU X H, et al. Broad-bandgap and Low-sidelobe Surface plasmon Polariton Reflector with Bragg-grating-based MIM Waveguide [J]. Opt Express, 2009, 17(16): 13727-13736.

[25] TAO J, HUANG X G, LIN X S, et al. Systematical Research on Characteristics of Double-sided Teeth-shaped Nanoplasmonic Waveguide Filters [J]. J Opt Soc Am B, 2010, 27(2) : 323-327.

[26] TAO J, HUANG X G, LIN X S, et al. A Narrow-band Subwavelength Plasmonic Waveguide Filter with Asymmetrical Multipleteeth-shaped Structure [J]. Opt Express, 2009, 17(16): 13989-13994.

[27] LIN X S, HUANG X G. Tooth-shaped Plasmonic Waveguide Filters with Nanometeric Sizes [J]. Opt Lett, 2008, 33(23): 2874-2876.

[28] QI Y, GAN D, MA J, et al. Spectrally Selective Splitters with Metal-dielectric-metal Surface Plasmon Waveguides [J]. Appl Phys B, 2009, 95: 807-812.

[29] WANG B AND WANG G P. Plasmon Bragg Reflectors and Nanocavities on Flat Metallic Surfaces [J]. Appl Phys Lett, 2005, 87: 013107-1-3.

[30] LIN W, WANG G. Metal Heterowaveguide Superlattices for a Plasmonic Analog to Electronic Bloch Oscillations [J]. Appl Phys Lett, 2007, 91: 143121.

[31] WANG G P, WANG B. Metal Heterostructure-based Nanophotonic Devices: Finite-difference Time-domain Numerical Simulations [J]. J Opt Soc Am B, 2006, 23: 1660-1665.

[32] CHEN L, WANG B, WANG G P. High Efficiency 90° Bending Metal Heterowaveguides for Nanophotonic Integration [J]. Appl Phys Lett, 2006, 89(24): 243120.

[33] HOSSIENI A, MASSOUD Y. A low-loss Metal-insulator-metal Plasmonic Bragg Reflector [J]. Opt Exp, 2006, 14: 11318-11323.

[34] HOSSEINI A, NEJATI H, MASSOUD Y. Modeling and Design Methodology for Metal-insulator-metal Plasmonic Bragg Reflectors [J]. Opt Exp, 2008, 16: 1475-1480.

[35] HAN Z H, FORSBERG E, HE S L. Surface Plasmon Bragg Gratings Formed in Metal-insulator-metal Waveguides [J]. IEEE Photon Tech Lett, 2007, 19: 91-93.

[36] LIN X S, HUANG X G. Numerical Modeling of a Teeth-shaped Nanoplasmonic Waveguide Filter [J]. J Opt Soc Am B, 2009, 26(7): 1263-1268.

[37] DINIZ L O, NUNES F D, MAREGA E, et al. Metal-insulator-metal Surface Plasmon Polariton Waveguide Filters with Cascaded Transverse Cavities [J]. J Lightwave Tech, 2011, 29(5): 714-720.

[38] PALIK E D. Handbook of Optical Constants of Solids [M]. New York: Academic, 1985.

[39] TAFLOVE A, HAGNESS S C. Computational Electrodynamics: The Finite-Difference Time-Domain Method (2nd ed) [M]. Boston·London: Artech House, 2000.

张高峰, 程雪莹, 薛文瑞. 槽深受sinc函数调制的表面等离子滤波器的传输特性[J]. 量子光学学报, 2012, 18(4): 363. ZHANG Gao-feng, CHENG Xue-ying, XUE Wen-rui. Propagation Properties of Surface Plasmonic Filter with SoltDepth Modulated by a Sinc Function[J]. Acta Sinica Quantum Optica, 2012, 18(4): 363.

本文已被 2 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!