PhotoniX, Volume. 2, Issue 1, 13(2021)

Recent progress in electro-optic polymer for ultra-fast communication

Fateh Ullah1,2、†, Niping Deng1,2、†, and Feng Qiu1,2、*
Author Affiliations
  • 1Key Laboratory of 3D Micro/Nano Fabrication and Characterization of Zhejiang Province, School of Engineering, Westlake University, 18 Shilongshan Road, Hangzhou, 310024 Zhejiang Province, China
  • 2Institute of Advanced Technology, Westlake Institute for Advanced Study, 18 Shilongshan Road, Hangzhou, 310024 Zhejiang Province, China
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    References(76)

    [1] [1] Benea-Chelmus I-C, Salamin Y, Settembrini FF, Fedoryshyn Y, Heni W, Elder DL, et al. Electro-optic interface for ultrasensitive intracavity electric field measurements at microwave and terahertz frequencies. Optica. 2020;7(5). .

    [14] [14] Benight SJ, Bale DH, Olbricht BC, Dalton LR. Organic electro-optics: Understanding material structure/function relationships and device fabrication issues. J Mater Chem. 2009;19(40). .

    [18] [18] Han XY, Wu ZL, Yang SC, Shen FF, Liang YX, Wang LH, et al. Recent progress of imprinted polymer photonic waveguide devices and applications. Polymers-Basel. 2018;10(6). .

    [41] [41] Samyn C, Van den Broeck K, Verbiest T, Persoons A. (1999) synthesis and nonlinear optical properties of high glass transition polyimides and poly (maleimide-styrene)s. organic thin films for photonic applications. Santa Clara: Optical Society of America; 1999.

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    Fateh Ullah, Niping Deng, Feng Qiu. Recent progress in electro-optic polymer for ultra-fast communication[J]. PhotoniX, 2021, 2(1): 13

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    Paper Information

    Category: Research Articles

    Received: May. 12, 2021

    Accepted: Jun. 18, 2021

    Published Online: Jul. 10, 2023

    The Author Email: Feng Qiu (qiufeng@westlake.edu.cn)

    DOI:10.1186/s43074-021-00036-y

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