• Laser & Optoelectronics Progress
  • Vol. 54, Issue 10, 100607 (2017)
Xie Lianghua1、2、*, Xu Dangpeng1, Li Mingzhong1, Zhang Xiaomin1, Sun Xibo1、2, Tian Xiaocheng1, Zhang Rui1, Zong Zhaoyu1, Fan Mengqiu1, Zhou Dandan1, Zhu Na1, Li Hongxun1, and Xiang Xiangjun1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/lop54.100607 Cite this Article Set citation alerts
    Xie Lianghua, Xu Dangpeng, Li Mingzhong, Zhang Xiaomin, Sun Xibo, Tian Xiaocheng, Zhang Rui, Zong Zhaoyu, Fan Mengqiu, Zhou Dandan, Zhu Na, Li Hongxun, Xiang Xiangjun. Effects of Structural Parameters on Mode Field Distribution of Photonic Crystal Fiber[J]. Laser & Optoelectronics Progress, 2017, 54(10): 100607 Copy Citation Text show less
    References

    [1] Chen M Y, Zhang Y K. Bend insensitive design of large-mode-area microstructured optical fibers[J]. Journal of Lightwave Technology, 2011, 29(15): 2216-2222.

    [2] Kong F, Dunn C, Parsons J, et al. Large-mode-area fibers operating near single-mode regime[J]. Optics Express, 2016, 24(10): 10295-10301.

    [3] Knight J C, Birks T A, Russell P St J, et al. All-silica single-mode optical fiber with photonic crystal cladding[J]. Optics Letters, 1996, 21(19): 1547-1549.

    [4] Schmidt O, Rothhardt J, Eidam T, et al. Single-polarization large-mode-area Yb-doped photonic crystal fiber[C]. Conference on Lasers and Electro-Optics, Optical Society of America, 2008: CMB2.

    [5] Geng Pengcheng, Hou Lantian, Han Weitao, et al. Design of large mode area Yb3+-doped seven-core photonic crystal fiber[J]. Acta Optica Sinica, 2010, 30(9): 2719-2723.

    [6] Wang Ziwei, Wang Zhaokun, Zou Feng, et al. High-pear-power rod-type photonic crystal fiber amplifier for picosecond pulse[J]. Chinese J Lasers, 2016, 43(10): 1001001.

    [7] Xiang P, Liang D. Fundamental-mode operation in polarization-maintaining ytterbium-doped fiber with an effective area of 1400 μm2[J]. Optics Letters, 2007, 32(4): 358-360.

    [8] Vogel M M, Abdou-Ahmed M, Voss A, et al. Very-large-mode-area, single-mode multicore fiber[J]. Optics Letters, 2009, 34(18): 2876-2878.

    [9] Chen M Y, Sun B, Zhang Y K, et al. Design of all-solid large-mode area microstructured-core optical fibers[J]. Optics Communications, 2010, 283(16): 3153-3157.

    [10] Ren Guobin, Wang Zhi, Lou Shuqin, et al. Study on photonic crystal fiber by effective-index model[J]. Chinese J Lasers, 2004, 31(6): 723-727.

    [11] Birks T A, Knight J C, Russell P S J, et al. Endlessly single-mode photonic crystal fiber[J]. Optics Letters, 1997, 22(13): 961-963.

    [12] Chow D M, Sandoghchi S R, Adikan F R M. Fabrication of photonic crystal fibers[C]. IEEE 3rd International Conference on Photonics, 2012: 13175947.

    [13] Agrawal G P. Nonlinear fiber optics[M]. Jia Dongfang, Transl. 3rd ed. Beijing: Publishing House of Electronics Industry, 2002: 7.

    [14] Liao Suying. Study on the characteristics of laser mode field in large-mode-area Yb3+ doped fibers[D]. Beijing: Tsinghua University, 2009: 42-43.

    [15] NKT company. Modal properties of Aerogain-rod high power ytterbium rod fiber gain modules[EB/OL]. http://www.nktphotonics.com/lasers-fibers/en/product/aerogain-rod-high-power-ytterbium-rod-fiber-gain-modules/.

    Xie Lianghua, Xu Dangpeng, Li Mingzhong, Zhang Xiaomin, Sun Xibo, Tian Xiaocheng, Zhang Rui, Zong Zhaoyu, Fan Mengqiu, Zhou Dandan, Zhu Na, Li Hongxun, Xiang Xiangjun. Effects of Structural Parameters on Mode Field Distribution of Photonic Crystal Fiber[J]. Laser & Optoelectronics Progress, 2017, 54(10): 100607
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