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The innermost air holes of photonic crystal fibers deform easily during the draw process, resulting in serious influcence on the practical fiber dispersion. Based on the multipole method, the simulation in the paper only changes the air holes in the secondlayer and the third layer to adjust the dispersion, while the innermost air holes each are set to have a smaller parameter. The simulation shows that this simple dispersion control method can also make zero-dispersion point quickly move and keep the dispersion flat. Based on the detailed analysis, we propose C-band near-zero flat dispersion photonic crystal fiber with the dispersion coefficient varying from -0.24ps/(km nm) to 0.33 ps/(km nm). Simulation shows that the air holes increasing from the fifth layer have little influence on the dispersion of previously proposed fiber, So by increasing the layers of air holes we can obtain an ideal confinement loss. This method is also applicable for the design of PCF operating in S and L bands with similar properties.
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Keywords:
- photonic crystal Fiber /
- dispersion coefficient /
- the multipole method /
- the confinement loss
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[1] Knight J C,Russell P S 2002 Science 296 276
[2] Fan H T,Li Q J 2007 Micronanoelectronic Technology 9 900(in Chinese) [范海涛、李秋菊 2007 微电子器件与技术 9 900]
[3] [4] Huang J J,Li G,Chen M,Pang Q S,Bi X J 2006 Laser Technology 30 432(in Chinese) [黄建军、李 港、陈 檬、庞庆生、毕向军 2006 激光技术 30 432]
[5] [6] Jiang L H,Hou L T 2010 Acta Phy. Sin. 59 1095(in Chinese)[姜凌红、侯蓝田 2010 物理学报 59 1095]
[7] [8] [9] Zhou G Y,Hou Z Y,Li S G,Han Y,Hou L T 2007 Acta Phys. Sin. 56 6486(in Chinese)[周桂耀、侯峙云、李曙光、韩 颖、侯蓝田 2007 物理学报 56 6486]
[10] [11] White T P,Kuhlmey B T,McPhedran R C,Maystre D,Renversez G,de Sterke C M,Botten L C 2002 J.Opt.Soc.Am.B 19 2322
[12] [13] Kuhlmey B T,White T P,Renversez G,Maystre D,Botten L C,de Sterke C M,Mcphedran R C 2002 J.Opt.Soc.Am.B 19 2331
[14] Du H L,Zheng Y,Li K,Fu X Y,Yan X 2008 Laser Infrared 38 161(in Chinese) [杜海龙、郑 义、李 坤、傅修远、闫 昕 2008 激光与红外 38 161]
[15] [16] [17] Song Z Y,Hou L T,Zhao X T,Wei D B,Liu X D,Liu Z L 2009 Brazilian Journal of Physics 39 519
[18] Wang H H,Xue W R,Zhang W M, 2008 Acta Optica Sinica 28 27 (in Chinese) [王红华、薛文瑞、张文梅 2008 光学学报 28 27]
[19] [20] Liang D H,Guo H C,Wang F Z,Li R,Hou L T 2010 Semiconductor Optoelectronics 31 112(in Chinese) [梁丹华、郭慧超、王福增、李 蕊、侯蓝田 2010 半导体光电 31 112]
[21] [22] [23] Liang D H,Hou L T,Wang W,Liu Z L 2009 Semiconductor Optoelectronics 30 590(in Chinese) [梁丹华、侯蓝田、王 伟、刘兆伦 2009 半导体光电 30 590]
[24] [25] Wang Z H,Wang Q Y,Li L F,Hu M L 2005 Journal of Optoelectronics Laser 16 629(in Chinese)[王子涵、王清月、栗岩锋、胡明烈 2005 光电子 〖14] Wang Z H,Li Y F,Hu M L Wang Q Y 2005 Chinese Journal of Quantum Electronics 22 771(in Chinese)[王子涵、栗岩锋、胡明列、王清月 2005 量子电子学报 22 771]
[26] [27] Wu W Q,Chen X W,Zhou H,Zhou K F,Lin X K,Lan S 2006 Acta Optica Sinica 35 110(in Chinese)[吴维庆,陈雄文,周 辉、周开锋、林旭开、兰 胜 2006 光子学报 35 110]
[28] [29] [30] Shi Z H,Yan K Z 2007 Acta Sinica Quantum Optica 13 224(in Chinese)[石宗、闫珂柱 2007 量子光学学报 13 224]
[31] Qiu J C,Liu H K,Tian X X,Yuan F L 2008 Semiconductor Optoelectronics 29 407(in Chinese)[邱俊才、刘汉奎、田小兴、袁福来 2008 半导体光电 29 407]
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