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Design of an ultra-broadband and fabrication-tolerant silicon polarization rotator splitter with SiO2 top cladding

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【作者】 陈鑫仇超盛振武爱民黄海阳赵瑛璇李伟王曦邹世昌甘甫烷

【Author】 Xin Chen;Chao Qiu;Zhen Sheng;Aimin Wu;Haiyang Huang;Yingxuan Zhao;Wei Li;Xi Wang;Shichang Zou;Fuwan Gan;State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology;University of Chinese Academy of Science;Nantong Opto-Electronics Engineering Center Chinese Academy of Science;

【机构】 State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information TechnologyUniversity of Chinese Academy of ScienceNantong Opto-Electronics Engineering Center Chinese Academy of Science

【摘要】 An ultra-broadband and fabrication-tolerant silicon polarization rotator splitter is proposed in this Letter.Benefitting from the broadband and low-loss characteristics of the bi-level taper and counter-tapered coupler,the designed device has a simulated insertion loss and crosstalk of less than 0.2 and -15 dB in the waveband from 1290 to 1610 nm. These characteristics make it valuable in applications with large bandwidth requirements, such as full-grid Coarse wavelength division multiplexer(CWDM) and diplexer/triplexer fiber-to-the-home systems.The fabrication tolerance of the design is also analyzed, showing that the device performance is quite stable with normal manufacturing errors in silicon photonics foundries.

【Abstract】 An ultra-broadband and fabrication-tolerant silicon polarization rotator splitter is proposed in this Letter.Benefitting from the broadband and low-loss characteristics of the bi-level taper and counter-tapered coupler,the designed device has a simulated insertion loss and crosstalk of less than 0.2 and -15 dB in the waveband from 1290 to 1610 nm. These characteristics make it valuable in applications with large bandwidth requirements, such as full-grid Coarse wavelength division multiplexer(CWDM) and diplexer/triplexer fiber-to-the-home systems.The fabrication tolerance of the design is also analyzed, showing that the device performance is quite stable with normal manufacturing errors in silicon photonics foundries.

【基金】 supported by the National Natural Science Foundation of China(Nos.61275112,61475180,and 11204340);the Science and Technology Commission of Shanghai Municipality(No.14JC1407600);the Shanghai Natural and Science Foundation(No.16ZR1442600)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2016年08期
  • 【分类号】TN622;TN929.1
  • 【被引频次】5
  • 【下载频次】55
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