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1.5μm波段硅基金属光栅单向透射的研究

Study on Unidirectional Transmission at 1.5μm Silicon-based Metal Gratings
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摘要 为了在硅衬底上制作全光逻辑元件,实现1.5μm波长的单向透射性,设计了一种基于硅衬底的复合金属光栅,利用光子在不同方向上入射到金属光栅表面时,耦合成表面等离子体的条件不同,通过FDTD数值仿真和优化,通过对光栅结构的优化和调节复合光栅的参数,实现了在1.5μm波段单向透射,正向入射光的透射率可达39%,对应的透射对比率可达9.4。这一研究成果可以应用于全光逻辑回路和全光二极管的设计。 To achieve unidirectional transmission at 1.5μm wavelength for full optical logical element based on silicon substrate,a compound metal grating based on silicon was designed.Different incident directions of the photons onto the surface of the metal grating will cause different conditions for coupling surface plasmons.FDTD numerical simulation and optimization were utilized to adjust the optimum compound grating structure and the corresponding parameters.Experimental results show that the unidirectional transmission at the wavelength of 1.5μm is achieved with a maximum transmission 39% at the selected forward direction and the corresponding transmission contrast rate is up to 9.4.
出处 《半导体光电》 CAS CSCD 北大核心 2013年第6期979-982,共4页 Semiconductor Optoelectronics
基金 国家自然科学基金重点项目(61234004) 国家自然科学基金项目(61176045) 国家自然科学青年基金项目(61106068)
关键词 表面等离子体 金属光栅 单向透射 透射光谱 surface plasmon metal grating unidirectional transmission transmission spectrum
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参考文献15

  • 1Tocci M D,Bloemer M J,Scalora M. Thin-film nonlinear optical diode[J].{H}Applied Physics Letters,1995,(18):2324-2326.
  • 2Lin X S,Yan J H,Wu L J. High transmissioncontrast for single resonator based all-optical diodeswith pump-assisting[J].{H}Opt Erpress,2008,(25):20949-20954.
  • 3Mingaleev S F,Kivshar Y S. Nonlinear transmission and light localization in photonie-crystal waveguides[J].{H}JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS,2002,(09):2241-2249.
  • 4Gevorgyan A H,Harutyunyan M Z. Chiral photonic crystals with an anisotropic defect layer[J].{H}Physical Review E,2007,(03):031701.
  • 5Feise M W,Shadrivov I V,Kivshar Y S. Bistable diode action in left-handed periodic structures[J].{H}Physical Review E,2005,(03):037602.
  • 6Khanikaev A B,Steel M J. Low-symmetry magnetic photonic crystals for nonreciprocal and unidirectional devices[J].{H}Opt Erpress,2009,(07):5265-5272.
  • 7Maier S A. Plasmonics:Fundamentals And Applications[M].{H}London:Springer,2007.21.
  • 8商科峰,闫连山,郭迎辉.级联槽型腔表面等离子体滤波器[J].半导体光电,2012,33(6):813-816. 被引量:2
  • 9陈凤翔,汪礼胜,祝霁洺.表面等离子体激元增强薄膜太阳电池研究进展[J].半导体光电,2011,32(2):158-164. 被引量:13
  • 10Hu X,Zhang Y,Xu X. Nanoscale surface plasmon all-optical diode based on plasmonic slot waveguides[J].Plasmonics,2011,(04):619-624.

二级参考文献45

  • 1Haase C, Stiebig H. Thin-film silicon solar cells with efficient periodic light trapping texture [J]. Appl. Phys. Lett. , 2007, 91: 061116-061118.
  • 2Hitoshi S, Hiroyuki F, Michio K, et al. Enhancement of light trapping in thin-film hydrogenated microcrystalline Si solar cells using back reflectors with self-ordered dimple pattern [J]. Appl. Phys. Lett. , 2008, 93: 143501-1-143501-3.
  • 3Catchpole K R, Polman A. Plasmonic solar cells[J]. Opt. Express, 2008, 16(26): 21793-21800.
  • 4Pillai S, Green M A. Plasmonics for photovoltaic applications [J]. Solar Energy Materials and Solar Cells, 2010, 94(9): 1481-1486.
  • 5Ferry V E, Verschuuren M A, Li H B, et al. Light trapping in ultrathin plasmonic solar cells[J]. Opt. Express, 2010, 18: A237-245.
  • 6Lee H C, Wu S C, Yang T C, et al. Efficiently harvesting sun light for silicon solar cells through advanced optical couplers and a radial p-n junction structure[J]. Energies, 2010, 3(4):784-802.
  • 7Pillai S. Surface plasmons for enhanced thin-film silicon solar cells and light emitting diodes [D]. Sydney, Australia.. University of New South Wales,2007: 28-72.
  • 8Bohren C F, Huffman D R. Absorption and scattering of light by small particles[M]. New York: Wiley- Interscience, 1983.
  • 9Cortie M B. The weird world of nanoscale gold[J]. Gold Bull, 2004, 37: 1-2.
  • 10Pissuwan D, Valenzuela S, Cortie M B. Therapeutic possibilities of plasmonieally heated gold nanopartieles[J]. Trends Bioteehnol, 2006, 24 (2) : 62-67.

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