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A kind of lead silicate photonic crystal fiber (PCF) is proposed in this paper. The dispersion characteristics of this SF57 PCF are studied by the finite element method. The reasults demonstrate that the PCF presents all-normal dispersion profiles in the visible and infrared spectral regions. We use an adaptive split-step Fourier method to study the propagations of the 1550 nm and 150 fs laser pulse in the PCF. The resulting spectral profiles are extremely flat from 1300 nm to 1900 nm and have excellent stabibities and coherence properties.
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Keywords:
- photonic crystal fiber /
- supercontinuum generation /
- normal dispersion
[1] Yan F P, Wang L, Mao X Q, Gong T R, Liu P, Tao P L, Peng W J 2010 Opt. Commun. 283 3658
[2] Li L L, Feng G Y, Yang H, Zhou G R, Zhou H, Zhu Q H, Wang J J, Zhou S H 2009 Acta Phys. Sin. 58 7005 (in Chinese) [李林栗, 冯国英, 杨浩, 周国瑞, 周昊, 朱启华, 王建军, 周寿桓 2009 58 7005]
[3] Yan H F, Yu Z Y, Tian H D, Liu Y M, Han L H 2010 Acta Phys. Sin. 59 3273 (in Chinese) [闫海峰, 俞重远, 田宏达, 刘玉敏, 韩利红 2010 59 3273]
[4] Harun S W, Akbari R, Arof H, Ahmad H 2011 Laser Phys. 21 1215
[5] Wang Y B, Xiong C L, Hou J, Lu Q S, Peng Y, Chen Z L 2011 Acta Phys. Sin. 60 014201 (in Chinese) [王彦斌, 熊春乐, 侯静, 陆启生, 彭杨, 陈子伦 2011 60 014201]
[6] Dudley J M, Genty G, and Coen S 2006 Rev. Mod. Phys. 78 1135
[7] Hilligsoe K M, Andersen T, Paulsen H, Nielsen C, Molmer K, Keiding S, Kristiansen R, Hansen K, Larsen J 2004 Opt. Express 12 1045
[8] Andresen E R, Paulsen H N, Birkedal V, Thφgersen J, Keiding S R 2005 J. Opt. Soc. Am. B 22 1934
[9] Zhu X P, Li S G, Du Y, Han Y, Zhang W Q, Ruan Y L, Ebendorff-Heidepriem H, Afshar H, Monro T M 2013 Chin. Phys. B 22 014215
[10] Heidt A M 2010 J. Opt. Soc. Am. B 27 550
[11] Falk P, Frosz M, Bang O 2005 Opt. Express 13 7535
[12] Heidt A M, Hartung A, Bosman G W, Krok P, Rohwer E G, Schwoerer H, Bartelt H 2011 Opt. Express 19 3775
[13] Hossain M A, Namihira Y, Razzak S M A, Islam M A, Liu J, Kaijage S F, Hirako Y 2012 Opt. Laser Technol. 44 976
[14] Jing Q, Ma H, Zhang X, Huang Y, Ren X 2012 Opt. Commun. 285 2917
[15] Kalashnikov V L, Sorokin E, Sorokina I T 2007 Appl. Phys. B 87 37
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[1] Yan F P, Wang L, Mao X Q, Gong T R, Liu P, Tao P L, Peng W J 2010 Opt. Commun. 283 3658
[2] Li L L, Feng G Y, Yang H, Zhou G R, Zhou H, Zhu Q H, Wang J J, Zhou S H 2009 Acta Phys. Sin. 58 7005 (in Chinese) [李林栗, 冯国英, 杨浩, 周国瑞, 周昊, 朱启华, 王建军, 周寿桓 2009 58 7005]
[3] Yan H F, Yu Z Y, Tian H D, Liu Y M, Han L H 2010 Acta Phys. Sin. 59 3273 (in Chinese) [闫海峰, 俞重远, 田宏达, 刘玉敏, 韩利红 2010 59 3273]
[4] Harun S W, Akbari R, Arof H, Ahmad H 2011 Laser Phys. 21 1215
[5] Wang Y B, Xiong C L, Hou J, Lu Q S, Peng Y, Chen Z L 2011 Acta Phys. Sin. 60 014201 (in Chinese) [王彦斌, 熊春乐, 侯静, 陆启生, 彭杨, 陈子伦 2011 60 014201]
[6] Dudley J M, Genty G, and Coen S 2006 Rev. Mod. Phys. 78 1135
[7] Hilligsoe K M, Andersen T, Paulsen H, Nielsen C, Molmer K, Keiding S, Kristiansen R, Hansen K, Larsen J 2004 Opt. Express 12 1045
[8] Andresen E R, Paulsen H N, Birkedal V, Thφgersen J, Keiding S R 2005 J. Opt. Soc. Am. B 22 1934
[9] Zhu X P, Li S G, Du Y, Han Y, Zhang W Q, Ruan Y L, Ebendorff-Heidepriem H, Afshar H, Monro T M 2013 Chin. Phys. B 22 014215
[10] Heidt A M 2010 J. Opt. Soc. Am. B 27 550
[11] Falk P, Frosz M, Bang O 2005 Opt. Express 13 7535
[12] Heidt A M, Hartung A, Bosman G W, Krok P, Rohwer E G, Schwoerer H, Bartelt H 2011 Opt. Express 19 3775
[13] Hossain M A, Namihira Y, Razzak S M A, Islam M A, Liu J, Kaijage S F, Hirako Y 2012 Opt. Laser Technol. 44 976
[14] Jing Q, Ma H, Zhang X, Huang Y, Ren X 2012 Opt. Commun. 285 2917
[15] Kalashnikov V L, Sorokin E, Sorokina I T 2007 Appl. Phys. B 87 37
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