Laser & Optoelectronics Progress, Volume. 55, Issue 5, 050005(2018)

Orbital Angular Momentum Multiplexing Technology Based on Optical Fiber

Jianfei Liu*, Dengke Xing, Xiangye Zeng, and Jia Lu
Author Affiliations
  • Tianjin Key Laboratory of Electronic Materials and Devices, School of Electronic and Information Engineering, Hebei University of Technology, Tianjin 300401, China
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    References(75)

    [5] Wang J, Yang J Y, Fazal I M et al. Demonstration of 12.8-bit/s/Hz spectral efficiency using 16-QAM signals over multiple orbital-angular-momentum modes. [C]∥37 th European Conference and Exposition on Optical Communications , 12356541(2011).

    [6] Ren Y, Huang H, Xie G et al. Experimental turbulence effects on crosstalk and system power penalty over a free space optical communication link using orbital angular momentum multiplexing. [C]∥IEEE Conference on Lasers and Electro-Optics, 14392562(2013).

    [7] Huang H, Xie G, Ren Y et al. 4×4 MIMO equalization to mitigate crosstalk degradation in a four-channel free-space orbital-angular-momentum-multiplexed system using heterodyne detection. [C]∥39 th European Conference and Exhibition on Optical Communication , 13842070(2013).

    [10] Zhao S M, Jiang X C, Gong L Y et al. Communications using orbital angular momentum multiplexing[J]. Journal of Nanjing University of Posts and Telecommunications (Natural Science Edition), 35, 1-13(2015).

    [11] Sun P J. Generation of vector vortex beams in an optical fiber[D]. Harbin: Harbin University of Science and Technology(2016).

    [14] Huang G Y. Modal characteristics of OAM in a modified ring fiber[D]. Hangzhou: Zhejiang University of Technology(2015).

    [18] Golowich S, Kristensen P, Bozinovic N et al. Fibers supporting orbital angular momentum states for information capacity scaling. [C]∥Proceeding of Frontiers in Optics Conference, New York(2012).

    [19] Gregg P, Kristensen P, Golowich S et al. CTu2K:. Electro-Optics, CTu2K, 2(2013).

    [25] Wang W, Hou L T. Present situation and future development in photonics crystal fibers[J]. Laser & Optoelectronics Progress, 45, 43-58(2008).

    [26] Zhang H, Zhang W B, Xi L X, Photonics Conference et al. ASu2A:. Hongkong, ASu2A, 54(2015).

    [28] Zhang H, Zhang W, Xi L et al. ATh2C:, ATh2C, 4(2016).

    [29] Zhu G X, Wang X Y, Chen Y J, modes[C]∥Asia Communications, Photonics Conference et al. AM3C:. Hongkong, AM3C, 4(2015).

    [32] Zhu L, Wang A, Liu J et al. W2A:[C]. OAM, modes transmission in a 2.6 km conventional graded-index multimode fiber assisted by high efficient mode-group excitation∥Optical Fiber Communication Conference, W2A, 32(2016).

    [35] Guo M J, Zeng J, Li J H. Generation and interference of vortex beam based on spiral phase plate[J]. Laser & Optoelectronics Progress, 53, 092602(2016).

    [36] Beijersbergen M W. Allen L, vander Venn H E L O, et al. Astigmatic laser mode converters and transfer of orbital angular momentum[J]. Optics Communications, 96, 123-132(1993).

    [39] Yan Y, Lin Z, Jian W et al. Generating orbital angular momentum modes in a fiber with a central square and a ring profile. [C]∥IEEE Photonics Conference, Arlington, 12443071(2011).

    [40] Wang J, Yang J Y, Fazal I M et al. 25.6-bit/s/Hz spectral efficiency using 16-QAM signals over pol-muxed multiple orbital-angular-momentum modes. [C]∥IEEE Photonics Conference, Arlington, 12470003(2011).

    [43] Hou J, Wang L Z, Yang C Y et al. Progress in optical orbital angular momentum communications[J]. Journal of South-Central University for Nationalities (Natural Science Edition), 33, 67-90(2014).

    [45] Du J, Li X H, Li S H, beams generation, Communication Conference & Exhibition et al. W2A:. California, W2A, 13(2016).

    [51] Wang Y J, Li X Z, Li H H et al. Research progress of perfect vortex field[J]. Laser & Optoelectronics Progress, 54, 090007(2016).

    [56] Beckhout G C. Lavery M P J, Courtial J, et al. Efficient sorting of orbital angular momentum states of light[J]. Physics Review Letters, 105, 153601(2010).

    [57] Zhong L. Generation of OAM laser and detection of OAM states[D]. Beijing: Beijing Institute of Technology(2015).

    [58] Ke X Z, Xu J Y. Interference and detection of vortex beams with orbital angular momentum[J]. Chinese Journal of Lasers, 43, 0905003(2016).

    [59] Mirhosseini M, Malik M, Shi Z et al[J]. Efficient separation of the orbital angular momentum eigenstates of light Nature Communications, 2013, 2781.

    [60] Strain M J, Cai X, Wang J et al[J]. Fast electrical switching of orbital angular momentum modes using ultra-compact integrated vortex emitters Nature Communications, 2014, 4856.

    [63] Liu B, Liu J, Chen P et al. Photonic demultiplexer for radio frequency orbital-angular-momentum signals. [C]∥IEEE Opto-Electronics and Communications Conference, 15650055(2015).

    [65] Bian F, Li S, Song Y et al. Generation of wideband radio frequency signals carrying orbital angular momentum based on microwave photonics phase shifter. [C]∥IEEE Conference on Lasers and Electro-Optics, 14862184(2014).

    [67] Ingerslev K, Gregg P, Galili M et al. M2D:[C]. MIMO-free OAM transmission∥Optical Fiber Communication Conference, M2D, 1(2017).

    [68] Krenn M, Handsteiner J, Fink M et al. Twisted light transmission over 143 km. [C]∥Proceedings of the National Academy of Sciences of the United States of America, 113, 13648-13653(2016).

    [70] Bozinovic N, Kristensen P. CTuB: CTuB1[C]. Ramachandran S. Long-range fiber-transmission of photons with orbital angular momentum∥Conference on Lasers, Electro-Optics(2011).

    [72] Nejad R M, Allahverdyan K, Vaity Pet al. Orbital angular momentum mode division multiplexing over 1. SW4F:. Electro-Optics, SW4F, 3(2016).

    [73] Wang J, Zhu L, Zou K et al. SW4F:[C]. OAM, modes, de, multiplexing, transmission in 2-km fiber with Nyquist 32-QAM coherent detection signals∥Conference on Lasers, Electro-Optics, SW4F, 2(2016).

    [74] Lai J S, Wu B B, Zhao W Y et al[J]. Application and analysis of orbital angular momentum technology in optical communication Telecommunications Science, 2014, 46-54.

    [75] Milione G, Huang H, Lavery M et al. M3K:[C]. de, multiplexer: a single optical element for MIMO-based, non-MIMO-based multimode fiber systems∥Optical Fiber Communication Conference, M3K, 6(2014).

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    Jianfei Liu, Dengke Xing, Xiangye Zeng, Jia Lu. Orbital Angular Momentum Multiplexing Technology Based on Optical Fiber[J]. Laser & Optoelectronics Progress, 2018, 55(5): 050005

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    Paper Information

    Category: General

    Received: Sep. 19, 2017

    Accepted: --

    Published Online: Sep. 11, 2018

    The Author Email: Jianfei Liu (jfliu@hebut.edu.cn)

    DOI:10.3788/LOP55.050005

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