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跑道型结构光子晶体波导定向耦合器 被引量:3

The Directional Coupler on The Basis of The Runway Type Photonic Crystal Waveguide
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摘要 鉴于波导定向耦合器在集成光路以及光电集成方面的广泛应用,提出了一种基于光子晶体波导间高效耦合的光子晶体定向耦合器。通过主波导和耦合波导间的耦合,可以实现对波长为1 490 nm和1 550 nm电磁波的高效分光。在将器件长度控制在30μm左右的同时,其总效率高达93.05%。另外,发现主波导和耦合波导间介质柱结构参数对电磁波的耦合周期有着极大的影响。并通过将介质柱沿z方向拉伸0.1a(a为晶格周期),设计了工作波长为1 530 nm和1 540 nm的光子晶体定向耦合器,器件长度仅为60μm。通过拉伸介质柱的纵向长度,可以大幅减小耦合周期,这对缩小器件体积以及实现更为密集的波分复用有着重要的意义。 Considering the significant value of the directional coupler on the integrated optical circuit and optical electronic integrated circuits,two dimensional photonic crystal directional coupler depended on the photonic crystal waveguide was designed.Via the coupling between the bus waveguide and the coupling waveguide,the high efficiency beam splitter of the electromagnetic wave with the wavelength of 1 490 nm and 1 550 nm was realized.The transmission efficiency reached about 93.5%,and the length of the device can be controlled under 30 μm.In addition,it was found that the coupling period was sensitive to the structure parameters of the rods located between the bus waveguide and the coupling waveguide.By stretching the length of the rods to about 0.1a(a is the lattice period) along z direction,the directional coupler with the working wavelength of 1 490 nm and 1 550 nm was designed.The length of the device was about 60 μm,which was much shorter than that without optimizing.The coupling period can be dramatically shorten by stretching the longitudinal length of the rods,which is of crucial value on the decreasing the volume of the device and the achievement of the denser wavelength division multiplexing.
出处 《发光学报》 EI CAS CSCD 北大核心 2013年第3期375-381,共7页 Chinese Journal of Luminescence
基金 国家自然科学基金(60877031)资助项目
关键词 光子晶体 定向耦合 波分复用 photonic crystal directional coupler wavelength division multiplex
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  • 1贾晓玲,高凡,张峰.新型SOI基3×3多模干涉波导光开关的优化设计[J].光学学报,2005,25(9):1208-1213. 被引量:11
  • 2万助军,吴亚明,李四华.基于多模干涉耦合器的集成热光开关实验研究[J].光学学报,2006,26(8):1187-1191. 被引量:4
  • 3Yablonovitch E 1987 Phys. Rev. Lett. 58 2059.
  • 4John S 1987 Phys. Rev. lett. 58 2486.
  • 5Joannopoulos J D, Villeneuve P R and Fan S 1997 Nature 386 143.
  • 6Sugisaka J, Yamamoto N, Okano M, Komori K, Yatagai T and Itoh M 2008 Opt. Commun. 281 5788.
  • 7Lu H, Tian H P, Li C H and Ji Y F 2009 Acta Phys. Sin. 58 2049 (in Chinese).
  • 8Zhang X, Tian H P and Ji Y F 2010 Opt. Commun. 283 1768.
  • 9Tada T, Poborchii V V and Kanayama T 2002 Micro. Eng. 63 259.
  • 10Liu L Y, Tian H P and Ji Y F 2011 Acta Phys. Sin. 60 104216 (in Chinese).

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  • 1KINCAID D,CHENEY W.数值分析[M].王国荣,俞耀明,徐兆亮,译.北京:机械工业出版社,2005.
  • 2黄德修, 张新亮, 黄黎蓉. 半导体光放大器及其应用[M]. 北京: 科学出版社, 2012.
  • 3S. K. Morrison,Y. S. Kivshar.Observation of enhanced beaming from photonic crystal waveguides[J].Applied Physics B.2009(1)
  • 4S. K. Morrison,Y. S. Kivshar.Beaming effect from increased-index photonic crystal waveguides[J].Applied Physics B (-).2005(2-3)
  • 5LI M, LI B W, SONG Y J, et al.. Investigation of costas loop synchronization effect on BER performance of space uplink optical communication system with BPSK scheme [J]. IEEE Photon. J., 2015, 7(4):7902309-1-3.
  • 6JI Y F, ZHANG J, ZHAO Y L, et al.. All optical switching networks with energy-efficient technologies from components level to network level [J]. IEEE J. Sel. Areas Commun., 2014, 32(8):1600-1614.
  • 7FERNANDEZ-RUIZ M R, CARBALLAR A, AZANA J. Design of ultrafast all-optical signal processing devices based on fiber Bragg gratings in transmission [J]. IEEE J. Lightwave Technol., 2013, 31(10):1593-1600.
  • 8OHATA N, YAMATOYA T, SAITO T, et al.. Input-power and polarization insensitive all-optical wavelength converter with monolithically integrated monitor PD and gain-controlled SOA [J]. IEEE J. Lightwave Technol., 2015, 33(1):267-274.
  • 9MATSUURA M, KISHI N. High-speed wavelength conversion of RZ-DPSK signal using FWM in a quantum-dot SOA [J]. IEEE Photon. Technol. Lett., 2011, 23(10):615-617.
  • 10CONTESTABILE G. Ultra-broadband, highly efficient coherent wavelength conversion in quantum dot SOA [C]. Proceedings of IEEE Photonics Conference, Bellevue, 2013:525-526.

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