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低偏振相关损耗聚合物光波导
引用本文:周骏,黄咏娴,潘裕斌,沈玉全,赵玉霞,贾振红. 低偏振相关损耗聚合物光波导[J]. 光子学报, 2007, 36(2): 205-208
作者姓名:周骏  黄咏娴  潘裕斌  沈玉全  赵玉霞  贾振红
作者单位:宁波大学,理学院物理系,宁波,315211;香港城市大学,电子工程系,香港,九龙,达之路;中国科学院,理化技术研究所,北京,100101;新疆大学,信息科学与工程学院,乌鲁木齐,830046
基金项目:国家自然科学基金 , Research Grants Council of Hong Kong , TWAS of UNESCO, Trieste, Italy
摘    要:
表征了新合成的热光聚合物bisphenol A-aldehyde resin (BPA-resin)的独特性质。并且利用光刻和反应离子刻蚀技术(RIE)制备成功BPA-resin 聚合物的单模条波导.实验结果表明,对于TE和TM偏振,该聚合物波导在1.31 μm和1.55 μm波长下分别有低达0.43 dB/cm和0.51 dB/cm的传播损耗.在上述波长下,波导的低偏振相关损耗 (PDL)小于0.1 dB/cm.因此,是制备可调热光器件的良好导波模快.

关 键 词:聚合物  光波导  热光效应  偏振相关损耗
文章编号:1004-4213(2007)02-0205-4
收稿时间:2005-06-07
修稿时间:2005-06-07

Low Polarization-Dependence Loss Polymeric Optical Waveguides
ZHOU Jun,HANG Yong-xian,PAN Yu-bin,SHEN Yu-quan,ZHAO Yu-xia,JIA Zhen-hong. Low Polarization-Dependence Loss Polymeric Optical Waveguides[J]. Acta Photonica Sinica, 2007, 36(2): 205-208
Authors:ZHOU Jun  HANG Yong-xian  PAN Yu-bin  SHEN Yu-quan  ZHAO Yu-xia  JIA Zhen-hong
Affiliation:1 Department of Optics ,Faculty of Science ,Ningbo University ,Ningbo 315211 ,China;2 Department of Electronic Engineering, City Universzty of Hong Kong , Kowloon, Hong Kong ,China;3 Technical Institute of Physics and Chemistry ,Chinese Academy of Sciences, Beijing 100101 ,China;4 School of Information Science and Engineering, Xinjiang University, Urumqi, 830046,China
Abstract:
The unique characteristics of newly synthesized thermo-optical polymer, bisphenol A-aldehyde resin (BPA-resin) has been presented. And the single-mode channel waveguides based on BPA-resin polymer were fabricated using photolithography and reactive ion etching (RIE) technique. The experimental results exhibit that the polymer waveguide has a low propagation loss of 0.43 dB/cm and 0.51 dB/cm at a wavelength of 1.31 μm and 1.55 μm, respectively, for both TE and TM polarizations. The low polarization dependence loss (PDL) of the waveguide was less than 0.1 dB/cm at above wavelengths, which can be applied in thermal-optical tuned devices.
Keywords:Polymer  Optical waveguides  Thermal optics  Polarization dependence loss
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