• Laser & Optoelectronics Progress
  • Vol. 50, Issue 4, 40601 (2013)
Mayilamu·Musideke*, Yao Jianquan, and Lu Ying
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/lop50.040601 Cite this Article Set citation alerts
    Mayilamu·Musideke, Yao Jianquan, Lu Ying. Solid-Core Octagonal Photonic Crystal Fiber with High Nonlinearity and Low Confinement Loss at 1.55 μm Wavelength[J]. Laser & Optoelectronics Progress, 2013, 50(4): 40601 Copy Citation Text show less
    References

    [1] J. C. Knight, T. A. Birks, P. J. St. Russell. All-silica single-mode optical fiber with photonic crystal cladding[J]. Opt. Lett., 1996, 21(19): 1547~1549

    [2] W. H. Reeves, J. C. Knight, P. J. St. Russell et al.. Demonstration of ultra-flattened dispersion in photonic crystal fibers[J]. Opt. Express, 2002, 10(14): 609~613

    [3] N. A. Mortensen, M. D. Nielsen, J. R. Folkenberg et al.. Improved large-mode-area endlessly single-mode photonic crystal fibers[J]. Opt. Lett., 2003, 28(6): 393~395

    [4] A. Ortigosa-Blanch, J. C. Knight, W. J. Wadsworth et al.. Highly birefringent photonic crystal fibers[J]. Opt. Lett., 2000, 25(18): 1325~1327

    [5] Ming Chen, Shizhong Xie. New nonlinear and dispersion flattened photonic crystal fiber with low confinement loss[J]. Opt. Commun., 2008, 281(8): 2073~2076

    [6] Zhang Shaohua, Yao Jianquan, Lu Ying et al.. Highly nonlinear photonic crystal fibers with ultra-flattened chromatic dispersion and low confinement loss[J]. Laser & Optoelectronics Progress, 2011, 48(12): 120605

    [7] Cui Liang, Li Xiaoying, Zhao Ningbo. Disperision property measurement of photonic crystal fiber by using spontaneous four wave mixing[J]. Acta Optica Sinica, 2012, 32(1): 0118002

    [8] Zhao Junfa, Yang Xiufeng, Li Yuan et al.. Stimulated Brillouin scattering slow light in photonic crystal fiber[J]. Acta Optica Sinica, 2010, 30(8): 2437~2440

    [9] Chen Yixin, Zhao Chunliu, Liu Xing et al.. Research and development of optical fiber sensors based on photonic crystal fiber loop mirrors[J]. Laser & Optoelectronics Progress, 2012, 49(1): 010005

    [10] Yang Guangqiang, Zhang Xia, Ren Xiaomin et al.. Experimental research on all-optical switch based on photonic crystal fiber[J]. Chinese J. Lasers, 2005, 32(12): 1650~1653

    [11] Yang Hui, Wang Zhiyong, Zhang Wei et al.. Properties of all-optical switch based on two-dimensional nonlinear photonic crystals[J]. Acta Optica Sinica, 2012, 32(10): 1016003

    [12] Li Shaohui, Yang Aiying, Cui Jianmin et al.. A study on all-optical switch using nonlinear optial loop mirror based on photonic crystal fiber[J]. Transactions of Beijing Institute of Technology, 2009, 29(2): 137~141

    [13] Xi Xiaoming, Chen Zilun, Sun Guilin et al.. Dual-wavelength pumped supercontinuum generation in tapered photonic crystal fibers[J]. Acta Optica Sinica, 2011, 31(2): 0206001

    [14] Liu Weihua, Song Xiaozhong, Wang Yishan et al.. Experimental research of supercontinuum generation by femtosecond pulse in highly nonlinear photonic crystal fiber[J]. Acta Physica Sinica, 2008, 57(2): 917~922

    [15] Wu Ming, Liu Hairong, Huang Dexiu. Analysis of nonlinear coefficient of highly nonlinear photonic crystal fibers[J]. Study on Optical Communications, 2007, 33(5): 44~47

    [16] A. H. Bouk, A. Cucinotta, F. Poli et al.. Dispersion properties of square-lattice photonic crystal fibers[J]. Opt. Express, 2004, 12(5): 941~946

    [17] Chen Jing, Tan Xiaoling. Study on the mode and dispersion properties of octagonal photonic crystal fibers[J]. Study on Optical Communications, 2009, 35(2): 46~49

    [18] K. Saitoh, M. Koshiba. Highly nonlinear dispersion-flattened photonic crystal fibers for supercomtinuum generation in a telecommunication window[J]. Opt. Express, 2004, 12(10): 2027~2032

    [19] S. M. Abdur Razzak,Yoshinori Namihiral. Proposal for highly nonlinear dispersion-flattened octagonal photonic crystal fibers[J]. IEEE Photon. Technol. Lett., 2008, 20(4): 249~251

    [20] F. Brechet, J. Marcou, D. Pagnoux et al.. Complete analysis of the characteristics of propagation into photonic crystal fibers, by the finite element method[J]. Opt. Fiber Technol., 2000, 6(2): 181~191

    [21] Shuqin Lou, Hong Fang, Honglei Li. Design of broadband nearly-zero flattened dispersion highly nonlinear photonic crystal fiber[J]. Chin. Opt. Lett., 2008, 6(11): 821~823

    [22] Wu Ming, Liu Hairong, Huang Dexiu. Dispersion Property in Highly Nonlinear Photonic Crystal Fiber[J]. Acta Optica Sinica, 2008, 28(3): 539~542

    [23] Niels Asger Mortensen. Effective area of photonic crystal fibers[J]. Opt. Express,2002, 10(7): 341~348

    [24] Wang Wei, Yang Bo, Song Hongru et al.. Characteristic analyses of high birefringence and two zero dispersion points photonic crystal fiber with octagonal lattices[J]. Acta Physica Sinica, 2012, 61(14): 144601

    [25] Yoshinori Namihira, Jingjing Liu, Taito Koga et al.. Design of highly nonlinear octagonal photonic crystal fiber with near-zero flattened dispersion at 1.31 μm waveband[J]. Opt. Rev., 2011, 18(6): 436~440

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    [1] Li Xuyou, Xu Zhenlong, Ling Weiwei, Guo Hui, Wang Suier. Numerical Simulation and Analysis of Photonic Crystal Fibers with High Nonlinearity and Flattened Chromatic Dispersion[J]. Chinese Journal of Lasers, 2014, 41(5): 505003

    Mayilamu·Musideke, Yao Jianquan, Lu Ying. Solid-Core Octagonal Photonic Crystal Fiber with High Nonlinearity and Low Confinement Loss at 1.55 μm Wavelength[J]. Laser & Optoelectronics Progress, 2013, 50(4): 40601
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