• Photonics Research
  • Vol. 5, Issue 3, 256 (2017)
Chenghui Tian1, Song Yu1、*, Shanyong Cai1, Mingying Lan2, and Wanyi Gu1
Author Affiliations
  • 1State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China
  • 2School of Digital Media and Design Arts, Beijing University of Posts and Telecommunications, Beijing 100876, China
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    DOI: 10.1364/PRJ.5.000256 Cite this Article Set citation alerts
    Chenghui Tian, Song Yu, Shanyong Cai, Mingying Lan, Wanyi Gu. Fiber laser for on-demand mode generation in 1550  nm band[J]. Photonics Research, 2017, 5(3): 256 Copy Citation Text show less
    References

    [1] G. Li, N. Bai, N. Zhao, C. Xia. Space-division multiplexing: the next frontier in optical communication. Adv. Opt. Photon., 6, 413-487(2014).

    [2] I. Spaleniak, S. Gross, N. Jovanovic, R. J. Williams, J. S. Lawrence, M. J. Ireland, M. J. Withford. Multiband processing of multimode light: combining 3D photonic lanterns with waveguide Bragg gratings. Laser Photon. Rev., 8, L1-L5(2014).

    [3] H. Huang, G. Milione, M. P. J. Lavery, G. Xie, Y. Ren, Y. Cao, N. Ahmed, T. A. Nguyen, D. A. Nolan, M. Li, M. Tur, R. R. Alfano, A. E. Willner. Mode division multiplexing using an orbital angular momentum mode sorter and MIMO-DSP over a graded-index few-mode optical fibre. Sci. Rep., 5, 14931(2015).

    [4] A. Li, Y. Wang, Q. Hu, W. Shieh. Few-mode fiber based optical sensors. Opt. Express, 23, 1139-1150(2015).

    [5] Y. Weng, E. Ip, Z. Pan, T. Wang. Single-end simultaneous temperature and strain sensing techniques based on Brillouin optical time domain reflectometry in few-mode fibers. Opt. Express, 23, 9024-9039(2015).

    [6] A. Forbes, A. Dudley, M. McLaren. Creation and detection of optical modes with spatial light modulators. Adv. Opt. Photon., 8, 200-227(2016).

    [7] L. Cui, J. Su, X. Li. Distribution of entangled photon pairs over few mode fibers. Asia Communications and Photonics Conference, AF1D.5(2016).

    [8] J. Hamazaki, R. Morita, K. Chujo, Y. Kobayashi, S. Tanda, T. Omatsu. Optical-vortex laser ablation. Opt. Express, 18, 2144-2151(2010).

    [9] D. J. Richardson, J. M. Fini, L. E. Nelson. Space-division multiplexing in optical fibres. Nat. Photonics, 7, 354-362(2013).

    [10] S. O. Arik, J. M. Kahn. Direct-detection mode-division multiplexing in modal basis using phase retrieval. Opt. Lett., 41, 4265-4268(2016).

    [11] S. Gross, N. Riesen, J. D. Love, M. J. Withford. Three dimensional ultra broadband integrated tapered mode multiplexers. Laser Photon. Rev., 8, L81-L85(2014).

    [12] A. Li, Y. Wang, J. Fang, M. Li, B. Y. Kim, W. Shieh. Few-mode fiber multi-parameter sensor with distributed temperature and strain discrimination. Opt. Lett., 40, 1488-1491(2015).

    [13] J. Leach, M. J. Padgett, S. M. Barnett, S. Franke-Arnold, J. Courtial. Measuring the orbital angular momentum of a single photon. Phys. Rev. Lett., 88, 257901(2002).

    [14] W. Koechner. Solid-State Laser Engineering(2006).

    [15] S. Ngcobo, I. Litvin, L. Burger, A. Forbes. A digital laser for on-demand laser modes. Nat. Commun., 4, 2289(2013).

    [16] C. Ma, S. Yu, M. Lan, S. Cai, S. Nie, W. Gu. Optimization of super pixel for higher order mode excitation in mode-division multiplexing system. Asia Communications and Photonics Conference, ASu2A.97(2015).

    [17] N. Bai, E. Ip, Y. Huang, E. Mateo, F. Yaman, M. Li, S. Bickham, S. Ten, J. Liñares, C. Montero, V. Moreno, X. Prieto, V. Tse, K. M. Chung, A. P. T. Lau, H.-Y. Tam, C. Lu, Y. Luo, G.-D. Peng, G. Li, T. Wang. Mode-division multiplexed transmission with inline few-mode fiber amplifier. Opt. Express, 20, 2668-2680(2012).

    Chenghui Tian, Song Yu, Shanyong Cai, Mingying Lan, Wanyi Gu. Fiber laser for on-demand mode generation in 1550  nm band[J]. Photonics Research, 2017, 5(3): 256
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