• Chinese Optics Letters
  • Vol. 16, Issue 10, 100604 (2018)
Jianfei Xing, Jianxiang Wen*, Jie Wang, Fufei Pang, Zhenyi Chen, Yunqi Liu, and Tingyun Wang**
Author Affiliations
  • Laboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai 200444, China
  • show less
    DOI: 10.3788/COL201816.100604 Cite this Article Set citation alerts
    Jianfei Xing, Jianxiang Wen, Jie Wang, Fufei Pang, Zhenyi Chen, Yunqi Liu, Tingyun Wang. All-fiber linear polarization and orbital angular momentum modes amplifier based on few-mode erbium-doped fiber and long period fiber grating[J]. Chinese Optics Letters, 2018, 16(10): 100604 Copy Citation Text show less
    References

    [1] G. Gardner. Ward’s Auto World, 33, 60(1997).

    [2] R. Ryf, S. Randel, A. H. Gnauck, C. Bolle, R.-J. Essiambre, P. Winzer, D. W. Peckham, A. McCurdy, R. Lingle. National Fiber Optic Engineers Conference, PDPB10(2011).

    [3] Y. Xie, S. Fu, M. Zhang, M. Tang, P. Shum, D. Liu. Opt. Commun., 306, 185(2013).

    [4] B. Zhu, T. Taunay, M. Yan, J. Fini, M. Fishteyn, E. Monberg, F. Dimarcello. Opt. Express, 18, 11117(2010).

    [5] B. J. Ainslie. J. Lightwave Technol., 9, 220(1991).

    [6] Q. Zhao, Z. Zhang, N. Zhao, X. Li. Laser Optoelectron. Progress, 53, 030602(2016).

    [7] Z. Zhang, Q. Mo, C. Guo, N. Zhao, C. Du, X. Li. Asia Communications and Photonics Conference, ATh3B-5(2016).

    [8] S. Jain, Y. Jung, T. C. May-Smith, S. U. Alam, J. K. Sahu, D. J. Richardson. Opt. Express, 22, 29031(2014).

    [9] Y. Jung, Q. Kang, R. Sidharthan, D. Ho, S. Yoo, P. Gregg, S. Ramachandran, S. U. Alam, D. J. Richardson. J. Lightwave Technol., 35, 430(2017).

    [10] L. Zhu, J. Li, G. Zhu, L. L. Wang, C. Cai, A. Wang, S. Li, M. Tang, Z. He, Y. Yu, C. Du, W. Luo, J. Liu, J. Du. Optical Fiber Communication Conference, W4C-4(2018).

    [11] Y. Luo, W. Zhou, L. Wang, A. Wang, J. Wang. Optical Fiber Communication Conference, M4D.2(2018).

    [12] Y. Zhao, Y. Liang, X. Su, W. Zhou, Y. Luo, Z. Huang, J. Wang. Optical Fiber Communications Conference and Exposition, W2A.24(2018).

    [13] J. Liu, H. Wang, S. Chen, S. Zheng, L. Zhu, A. Wang, N. Zhou, S. Li, S. Li, C. Du, Q. Mo, J. Wang. Optical Fiber Communication Conference, W2A-21(2017).

    [14] P. Wang, J. Wen, Y. Dong, F. Pang, T. Wang, Z. Chen. Asia Communications and Photonics Conference, AW4C.5(2013).

    [15] J. Wen, P. Wang, Y. Dong, F. Pang, X. Zeng, Z. Chen, T. Wang. CLEO , JTu4A(2013).

    [16] E. M. Dianov, M. A. Mel’kumov, A. V. Shubin, S. V. Firstov, V. F. Khopin, A. N. Gur’yanov, I. A. Bufetov. Quant. Electron., 39, 1099(2009).

    [17] Y. Luo, J. Wen, J. Zhang, J. Canning, G.-D. Peng. Opt. Lett., 37, 3447(2012).

    [18] P. M. Becker, A. A. Olsson, J. R. Simpson. Erbium-Doped Fiber Amplifiers: Fundamentals and Technology(1999).

    [19] V. Dvoyrin, V. Mashinsky, E. Dianov, A. Umnikov, M. Yashkov, A. Guryanov. European Conference on Optical Communication , Th3.3.5(2005).

    [20] A. N. Romanov, Z. T. Fattakhova, D. M. Zhigunov, V. N. Korchak, V. B. Sulimov. Opt. Mater., 33, 631(2011).

    [21] S. Ramachandran, Z. Wang, M. Yan. Opt. Lett., 27, 698(2002).

    [22] G. Rego, R. Falate, J. L. Santos, H. M. Salgado, J. L. Fabris, S. L. Semjonov, E. M. Dianov. Opt. Lett., 30, 2065(2005).

    [23] I. Giles, A. Obeysekara, R. Chen, D. Giles, F. Poletti, D. Richardson. IEEE Photonics Technol. Lett., 24, 1922(2012).

    [24] Y. Liu, H. W. Lee, K. S. Chiang, T. Zhu, Y. J. Rao. J. Lightwave Technol., 27, 857(2009).

    [25] Y. Zhao, Y. Liu, L. Zhang, C. Zhang, J. Wen, T. Wang. Opt. Express, 24, 6186(2016).

    CLP Journals

    [1] Chunxiang Zhang, Fufei Pang, Huanhuan Liu, Lifei Chen, Junfeng Yang, Jianxiang Wen, Tingyun Wang. Highly efficient excitation of LP01 mode in ring-core fibers by tapering for optimizing OAM generation[J]. Chinese Optics Letters, 2020, 18(2): 020602

    [2] Tianying Lin, Ang Liu, Xiaopei Zhang, He Li, Liping Wang, Hailong Han, Ze Chen, Xiaoping Liu, Haibin Lü. Analyzing OAM mode purity in optical fibers with CNN-based deep learning[J]. Chinese Optics Letters, 2019, 17(10): 100603

    [3] Zhenzhen Zhang, Cheng Guo, Liang Cui, Yichi Zhang, Cheng Du, Xiaoying Li. All-fiber few-mode erbium-doped fiber amplifier supporting six spatial modes[J]. Chinese Optics Letters, 2019, 17(10): 100604

    [4] Cuiting Sun, Ran Wang, Xiren Jin, Zemin Wang, Weiliang Liu, Shuo Zhang, Yiwei Ma, Jingyu Lin, Yue Li, Tao Geng, Weimin Sun, Zhongquan Qu, Libo Yuan. A new phase-shifted long-period fiber grating for simultaneous measurement of torsion and temperature[J]. Chinese Optics Letters, 2020, 18(2): 021203

    [5] Yong Zhou, Panyun Gao, Xiu Zhang, Peng Wang, Liang Chen, Weiqing Gao. Switchable multi-wavelength erbium-doped fiber laser based on a four-mode FBG[J]. Chinese Optics Letters, 2019, 17(1): 010604

    [6] Zuliang Ruan, Li Pei, Jingjing Zheng, Jianshuai Wang, Liangying Wu, Tigang Ning, Ji Wang. Intensity detecting refractive index sensors with long-period fiber gratings written in STS structure[J]. Chinese Optics Letters, 2019, 17(7): 070601

    [7] Xin Tian, Hao Li, Le Liu, Meng Wang, Xiaoming Xi, Zefeng Wang. Ultra-broadband highly efficient mode converter at 1 μm fabricated by a line-focused CO2 laser[J]. Chinese Optics Letters, 2019, 17(12): 120602

    Data from CrossRef

    [1] Felipe Delgado, Alexandre Bessa. Comparative study of coupling to symmetric and antisymmetric cladding modes in long-period fiber gratings. Journal of Modern Optics, 1(2019).

    Jianfei Xing, Jianxiang Wen, Jie Wang, Fufei Pang, Zhenyi Chen, Yunqi Liu, Tingyun Wang. All-fiber linear polarization and orbital angular momentum modes amplifier based on few-mode erbium-doped fiber and long period fiber grating[J]. Chinese Optics Letters, 2018, 16(10): 100604
    Download Citation