Chinese Journal of Lasers, Volume. 47, Issue 11, 1106004(2020)

Design of Low Crosstalk Few Mode Multi-Core Fiber Based on Heterogeneous Structure

Liu Chang, Pei Li*, Xie Yuheng, Wang Jianshuai, Zheng Jingjing, Ning Tigang, and Li Jing
Author Affiliations
  • Key Laboratory of All Optical Network and Advanced Telecommunication Network of Ministry of Education, Institute of Lightwave Technology, Beijing Jiaotong University, Beijing 100044, China
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    References(27)

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    [6] Ye F H, Tu J J, Saitoh K et al. Design of homogeneous trench-assisted multi-core fibers based on analytical model[J]. Journal of Lightwave Technology, 34, 4406-4416(2016).

    [10] Mukasa K, Imamura K, Sugizaki R. Multi-core few-mode optical fibers with large aeff. [C]∥European Conference and Exhibition on Optical Communication 2012, September 16-20, 2012, Amsterdam, Netherlands. Washington, D.C.: OSA, 1-3(2012).

    [11] Sakamoto T, Matsui T, Saitoh K et al. Low-loss and low-DMD 6-mode 19-core fiber with cladding diameter of less than 250 μm[J]. Journal of Lightwave Technology, 35, 443-449(2017).

    [12] Sakamoto T, Saitoh K, Saitoh S et al. Six-mode seven-core fiber for repeated dense space-division multiplexing transmission[J]. Journal of Lightwave Technology, 36, 1226-1232(2018).

    [14] Jin W X, Ren G B, Pei L et al. Dual-mode large-mode-area multi-core fiber with circularly arranged airhole cores[J]. Acta Physica Sinica, 66, 024210(2017).

    [15] Tu J J, Saitoh K, Amma Y et al. Heterogeneous trench-assisted few-mode multi-core fiber with graded-index profile and square-lattice layout for low differential mode delay[J]. Optics Express, 23, 17783-17792(2015).

    [16] Tu J J, Saitoh K, Koshiba M et al. Optimized design method for bend-insensitive heterogeneous trench-assisted multi-core fiber with ultra-low crosstalk and high core density[J]. Journal of Lightwave Technology, 31, 2590-2598(2013).

    [17] Hayashi T, Taru T, Shimakawa O et al. Design and fabrication of ultra-low crosstalk and low-loss multi-core fiber[J]. Optics Express, 19, 16576-16592(2011).

    [18] Koshiba M, Saitoh K, Takenaga K et al. Multi-core fiber design and analysis: coupled-mode theory and coupled-power theory[J]. Optics Express, 19, B102-B111(2011).

    [24] Sakamoto T, Mori T, Yamamoto T et al. Mode-division multiplexing transmission system with DMD-independent low complexity MIMO processing[J]. Journal of Lightwave Technology, 31, 2192-2199(2013).

    [25] Sasaki Y, Takenaga K, Matsuo S et al. Few-mode multicore fibers for long-haul transmission line[J]. Optical Fiber Technology, 35, 19-27(2017).

    [26] Sasaki Y, Takenaga K, Aikawa K et al. Single-mode 37-core fiber with a cladding diameter of 248 μm. [C]∥2017 Optical Fiber Communications Conference and Exhibition (OFC), March 19-23, 2017, Los Angeles, CA, USA. New York: IEEE, 1-3(2017).

    [27] Matsuo S, Takenaga K, Arakawa Y et al. Large-effective-area ten-core fiber with cladding diameter of about 200 μm[J]. Optics Letters, 36, 4626-4628(2011).

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    Liu Chang, Pei Li, Xie Yuheng, Wang Jianshuai, Zheng Jingjing, Ning Tigang, Li Jing. Design of Low Crosstalk Few Mode Multi-Core Fiber Based on Heterogeneous Structure[J]. Chinese Journal of Lasers, 2020, 47(11): 1106004

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    Paper Information

    Category: Fiber optics and optical communication

    Received: Jun. 2, 2020

    Accepted: --

    Published Online: Oct. 23, 2020

    The Author Email: Li Pei (lipei@bjtu.edu.cn)

    DOI:10.3788/CJL202047.1106004

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