光子学报, 2010, 39 (1): 100, 网络出版: 2010-03-11   

聚合物波导微环谐振器的无热化设计

Design of Athermal Polymer Waveguide Microring Resonator
作者单位
1 大连理工大学 物理与光电工程学院
2 光子技术研究中心,辽宁 大连 116024
3 大连理工大学 化工学院 高分子材料系
摘要
从波导微环谐振器的谐振方程出发,推导出了波导微环谐振器的无热化条件和谐振波长温度依赖特性表达式,分析了硅衬底PSQ聚合物波导微环谐振器滤波功能的温度特性.通过选择合适的聚合物衬底来取代传统的硅衬底,可极大地减小聚合物波导微环谐振器的温度敏感性,给出了聚合物衬底选择的方法.研究结果表明,所设计的全聚合物波导微环谐振器,在温度从20~65 ℃范围内谐振波长漂移量最大值为-0.008 5 nm,温度依赖波长漂移率最大值为-0.000 90 nm/K,实现了无热化.
Abstract
According to the resonant equation of waveguide microring resonator,the athermal condition and the temperature-dependence of resonant wavelength are deduced.The temperature-dependent properties of PSQ polymer based waveguide microring resonator are analyzed.By choosing proper polymer substrate to substitute the traditional silicon substrate,the temperature sensitivity of polymer waveguide microring resonator can be suppressed greatly,and the choice method for optimal polymer substrate is given.The results show that the designed all polymer waveguide microring resonator has the maximal resonant wavelength shift of -0.008 5 nm and the maximal wavelength shift slope of -0.000 90 nm·K-1 during the temperature variation from 20 ℃ to 65 ℃,and the athermalization is achieved.
参考文献

[1] OTTO S.A decade of progress in microring and microdisk based photonic circuits:a personal selection[C]. SPIE,2008,6872:68720H1-14.

[2] . Silicon-on-Insulator microring resonator for sensitive and label-free biosensing[J]. Opt Express, 2007, 15(12): 7610-7615.

[3] . Polymer micro-ring filters and modulators[J]. IEEE J Ligthwave Tech, 2002, 20(11): 1968-1975.

[4] 鄂书林,邓文渊,王鹏飞,等.聚合物微型谐振环波分复用器[J].发光学报,2005,26(4):538-541.

    E Shu-lin,DENG Wen-yuan,WANG Peng-fei,et al.Polymer microring resonator wavelength multiplexer[J].Chinese Journal of Luminescence,2005,26(4):538-541.

[5] 庞拂飞,韩秀友,蔡海文,等.利用有机-无机溶胶-凝胶方法制备平面波导环形谐振腔[J].中国激光,2006,33(5):591-595.

    PANG Fu-fei,HAN Xiu-you,CAI Hai-wen,et al.An integrated optical waveguide ring resonator by using Sol-Gel technology[J].Chinese Journal of Lasers,2006,33(5):591-595.

[6] 潘剑侠,王帆,杨建义.微环辅助Mach-Zehnder光调制器的线性特性[J].光子学报,2008,37(8):1511-1515.

    PAN Jian-xia,WANG Fan,YANG Jian-yi.Linearity of microring assisted Mach-Zehnder optical modulators[J].Acta Photonica sinica,2008,37(8):1511-1515.

[7] 闫欣,马春生,王现银,等.聚合物微环电光开关的模拟和优化[J].光子学报,2008,37(12):2374-2378.

    YAN Xin,MA Chun-sheng,WANG Xian-yin,et al.Simulation and optimization of polymer electro-optic microring resonator switches[J].Acta Photonica sinica,2008,37(12):2374-2378.

[8] . Widely tunable coupled-ring-reflector filter based on planar polymer waveguide[J]. IEEE Photonics Tech Lett, 2008, 20(12): 988-990.

[9] . Temperature-independent optical filter at 1.55 μm wavelengthusing a silica-based athermal waveguide[J]. Electron Lett, 1998, 34(4): 367-369.

[10] . Temperature insensitive vertically coupled microring resonator add/drop filters by means of a polymer overlay[J]. IEEE Photonics Tech Lett, 1999, 11(9): 1138-1140.

[11] KOBAYSHI N,ZAIZEN N,KOKUBUN Y.Athermal and polarization-independent microring resonator filter using stress control[J].Japanese Journal of Applied Physics,2007,46(8B):5465-5469.

[12] . Temperature dependence of silicon nanophotonic ring resonator with a polymeric overlayer[J]. IEEE J Ligthwave Tech, 2007, 25(8): 2236-2243.

[13] . Thermo-optic coefficients of polymers for optical waveguide applications[J]. Polymer, 2006, 47(14): 4893-4896.

[14] . Temperature-insensitive flexible polymer wavelength filter fabricated on polymer substrates[J]. Appl Phy Lett, 2005, 87(23): 233504.

[15] NISHIHARA H,HARUNA M,SUHARA T.Optical integrated circuits[M].New York:McGraw-Hill,1989,43-44.

[16] ZHANG Hong-bo,WANG Jin-yan,LI Lin-ke Li,et al.Synthesis of liquid polysilisiquioxane resins and properties of cured films[J] Thin Solid Films,2008,517(2):857-862.

[17] 李林科.基于新型聚合物材料的微环谐振器的基础研究[D].大连:大连理工大学,2007:第六章.

    LI Lin-ke.Study of novel-polymer-based microring resonator[D].Dalian:Dalian University of Technology,2007:Chapter 6.

[18] . Athermal polarization-independent arrayed-waveguide grating (AWG) multiplexer using an all-polymer approach[J]. Appl Phys B, 2001, 73: 619-622.

韩秀友, 张佳宁, 金婷婷, 王凌华, 赵明山, 王锦艳, 蹇锡高. 聚合物波导微环谐振器的无热化设计[J]. 光子学报, 2010, 39(1): 100. HAN Xiu-you, Zhang Jia-ning, JIN Ting-ting, WANG Ling-hua, ZHAO Ming-shan, WANG Jin-yan, JIAN Xi-gao. Design of Athermal Polymer Waveguide Microring Resonator[J]. ACTA PHOTONICA SINICA, 2010, 39(1): 100.

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