Low-loss and polarization-insensitive photonic integrated circuit based on micron-scale SOI platform for High Density TDM PONs

Qiang Zhang, Shengmeng Fu, Jiangwei Man, Zhiwei Li, Matteo Cherchi, Päivi Heimala, Mikko Harjanne, Sun Fei, Marianne Hiltunen, Timo Aalto, Li Zeng

    Research output: Chapter in Book/Report/Conference proceedingConference article in proceedingsScientificpeer-review

    Abstract

    We present a photonic integrated circuit of four-channel bidirectional-optical-subassembly on micron-scale silicon. Experimental results with loss less than 1.5dB, PDL<0.5dB, and near 30dB isolation, allow for the realization of Class C+ QSFP TDM-PON OLT module.

    Original languageEnglish
    Title of host publication2017 Optical Fiber Communications Conference and Exhibition (OFC)
    PublisherOptical Society of America OSA
    Number of pages3
    ISBN (Electronic)978-1-9435-8023-1
    ISBN (Print)978-1-943580-23-1, 978-1-5090-6229-4
    DOIs
    Publication statusPublished - 31 May 2017
    MoE publication typeA4 Article in a conference publication
    EventOptical Fiber Communications Conference and Exhibition, OFC 2017 - Los Angeles, United States
    Duration: 19 Mar 201723 Mar 2017

    Conference

    ConferenceOptical Fiber Communications Conference and Exhibition, OFC 2017
    CountryUnited States
    CityLos Angeles
    Period19/03/1723/03/17

    Keywords

    • C (programming language)
    • integrated circuits
    • optical fiber communication
    • optical fibers
    • passive optical networks
    • photonic devices
    • timing circuits
    • photonic integration technology
    • OtaNano

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    Zhang, Q., Fu, S., Man, J., Li, Z., Cherchi, M., Heimala, P., Harjanne, M., Fei, S., Hiltunen, M., Aalto, T., & Zeng, L. (2017). Low-loss and polarization-insensitive photonic integrated circuit based on micron-scale SOI platform for High Density TDM PONs. In 2017 Optical Fiber Communications Conference and Exhibition (OFC) [7937000] Optical Society of America OSA. https://doi.org/10.1364/OFC.2017.Th2A.5