光子学报, 2002, 31 (3): 354, 网络出版: 2007-09-18   

弱导波导多模干涉耦合器结构参量优化设计

OPTIMAL DESIGN OF WEAK-WAVEGUIDE MULTIMODE INFERENCE COUPLER STRUCTURE
作者单位
浙江大学光电系现代光学仪器国家重点实验室光与电磁波研究中心,杭州,310027
摘要
本文分析了以硅基底上二氧化硅波导为代表的弱导波导多模干涉(MMI)耦合器件输入(出)波导位置及宽度和MMI长度等结构参量对器件性能的影响.提出了参量空间法,在给定工艺材料参量和多模波导宽度情况下,通过匹配各结构参量,制出均匀性好、附加损耗低的弱导波导多模干涉耦合器件.
Abstract
参考文献

[1] Soldano L B,Pennings C M.Optical multi-mode interference devices based on self-imaging:principles andapplications.J Lightwave Tech,1995,13(4):615~627

[2] Soldano L B,Veerman F B,Smit M K,et al.Planar monomode optical couplers based on multimode interferenceeffects.J Lightwave Tech,1992,10(12):1843~1850

[3] Porque J,Coudray P,Charters R,et al.WDM based on multimode interference-coupler built in an organic-inorganicmaterial.Optics Communication,2000,183(1-4):45~49

[4] Smit M K,van Dam C.PHASAR-based WDM-devices:principles and applications.IEEE J Selected Topics inQuantum Electronics,1996,2(2):236~250

[5] Ulrich R,Kamiya T.Resolution of self-images in planar optical waveguides.J Opt Soc Amer,1978,68(5):583~592

[6] Huang J Z,Scarmozzino R,Osgood R M.A new design approach to large input/output number multimodeinterference couplers and its application to low-crosstalk WDM routers.IEEE Photonics Tech Lett,1998,10(9):1292~1294

[7] Yin R,Yang J,Jiang X,et al.Improved approach to low-loss and high-uniformity MMI devices.Opt Communications,2000,181(4-6):317~321

[8] Lee K H,Steenaart W.Analysis of N×N passive optical star coupler based on the normal modes of N inputwaveguides.J Lightwave Tech,1992,10(12):1800~1805

[9] Scarmozzino R,Gopinath A,Pregla R,Helfert S.Numerical techniques for modeling guided-wave photonic devices.IEEE J Selected Topocs in Quantum Electron,2000,6(1):150~162

王谦, 何赛灵, 黄耐容, 殷源. 弱导波导多模干涉耦合器结构参量优化设计[J]. 光子学报, 2002, 31(3): 354. 王谦, 何赛灵, 黄耐容, 殷源. OPTIMAL DESIGN OF WEAK-WAVEGUIDE MULTIMODE INFERENCE COUPLER STRUCTURE[J]. ACTA PHOTONICA SINICA, 2002, 31(3): 354.

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