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Cross-polarized wave (XPW) generation based on BaF2 crystal is one of the most important tools in improving the contrast of ultra-intense femtosecond laser pulses at present. In this paper, the influences of linear chirp with different input pulse intensities on BaF2 XPW generation, including conversion efficiency, spectrum broadening, and pulse duration reduction are in detail simulated and discussed. Especially, the influence of linear chirp on spectrum broadening is comparatively investigated under unsaturated and intense input pulses. While the amount of spectrum broadening relative to linear chirp is symmetrical with respect to the zero chirp point under unsaturated input pulse, the results show that it is no longer those in the case under intense input pulse, and the intrinsic reason is explained in detail in this paper.
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Keywords:
- cross-polarized wave /
- linear chirp /
- spectrum broadening /
- un-symmetrical
[1] Daido H, Nishiuchi M, Pirozhkov A S 2012 Rep. Prog. Phys. 75 056401
[2] Malka V, Faure J, Gauduel Y A, Lefebvre E, Rousse A, Phuoc K T 2008 Nat. Phys. 4 447
[3] Fang Z B, Cheng C F, Zhang X M, Shen B F 2005 Chin. Phys. B 14 1850
[4] Dong K G, Gu Y Q, Zhu B, Wu Y C, Cao L F, He Y L, Liu H J, Hong W, Zhou W M, Zhao Z Q, Jiao C Y, Wen X L, Zhang B H, Wang X F 2010 Acta Phys. Sin. 59 8738 (in Chinese) [董克攻, 谷渝秋, 朱斌, 吴玉迟, 曹磊峰, 何颖玲, 刘红杰, 洪伟, 周维民, 赵宗清, 焦春晔, 温贤伦, 张保汉, 王晓方 2010 59 8738]
[5] Tan F, Zhu B, Han D, Xin J T, Zhao Z Q, Cao L F, Gu Y Q, Zhang B H 2014 Chin. Phys. B 23 034104
[6] Ge Y C, He H P 2014 Chin. Phys. B 23 074207
[7] Kapteyn H C, Murnane M M, Szoke A, Falcone R W 1991 Opt. Lett. 16 490
[8] Hong K H, Hou B, Nees J A, Power E, Mourou G A 2005 Appl. Phys. B 81 447
[9] Jovanovic I, Barty C P J, Haefner C, Wattellier B 2006 Opt. Lett. 31 787
[10] Yoshida H, Ishii E, Kodama R, Fujita H, Kitagawa Y, Izawa Y, Yamanaka T 2003 Opt. Lett. 28 257
[11] Ross I N, Collier J L, Matousek P, Danson C N, Neely D, Allott R M, Pepler D A, Hernandez G C, Osvay K 2000 Appl. Opt. 39 2422
[12] Liu C, Wang Z H, Li W C, Liu F, Wei Z Y 2010 Acta Phys. Sin. 59 7036 (in Chinese) [刘成, 王兆华, 李伟昌, 刘峰, 魏志义 2010 59 7036]
[13] Wang J Z, Huang Y S, Xu Y, Li Y Y, Lu X M, Leng Y X 2012 Acta Phys. Sin. 61 094214 (in Chinese) [王建州, 黄延穗, 许毅, 李妍妍, 陆效明, 冷雨欣 2012 61 094214]
[14] Jullien A, Albert O, Burgy F, Hamoniaux G, Rousseau J P, Chambaret J P, Augé-Rochereau F, Chériaux G, Etchepare J, Minkovski N, Saltiel S M 2005 Opt. Lett. 30 920
[15] Chvykov V, Rousseau P, Reed S, Kalinchenko G, Yanovsky V 2006 Opt. Lett. 31 1456
[16] Jullien A, Canova L, Albert O, Boschetto D, Antonucci L, Cha Y H, Rousseau J P, Chaudet P, Chériaux G, Etchepare J, Kourtev S, Minkovski N, Saltiel S M 2007 Appl. Phys. B 87 595
[17] Canova L, Albert O, Forget N, Mercier B, Kourtev S, Minkovski N, Saltiel S M, Lopez-Martens R 2008 Appl. Phys. B 93 443
[18] Jullien A, Durfee C G, Trisorio A, Canova L, Rousseau J P, Mercier B, Antonucci L, Chériaux G, Albert O, Lopez-Martens R 2009 Appl. Phys. B 96 293
[19] Cotel A, Jullien A, Forget N, Albert O, Chériaux G, Leblanc C 2006 Appl. Phys. B 83 7
[20] Jullien A, Kourtev S, Albert O, Chériaux G, Etchepare J, Minkovski N, Saltiel S M 2006 Appl. Phys. B 84 409
[21] Canova L, Kourtev S, Minkovski N, Jullien A, Lopez-Martens R, Albert O, Saltiel S M 2008 Appl. Phys. Lett. 92 231102
[22] Ricci A, Silva F, Jullien A, Cousin S L, Austin D R, Biegert J, Lopez-Martens R 2013 Opt. Express 21 9711
[23] Ramirez L P, Papadopoulos D N, Pellegrina A, Georges P, Druon F, Monot P, Ricci A, Jullien A, Chen X, Rousseau J P, Lopez-Martens R 2011 Opt. Express 19 93
[24] Jullien A, Albert O, Chériaux G, Etchepare J, Kourtev S, Minkovski N, Saltiel S M 2005 J. Opt. Soc. Am. B 22 2635
[25] Minkovski N, Petrov G I, Saltiel S M, Albert O, Etchepare J 2004 J. Opt. Soc. Am. B 21 1659
[26] Trebino R 2002 Frequency-Resolved Optical Gating: The Measurement of Ultrashort Laser Pulses (Boston: Kluwer Academic Publishers) pp16-17
[27] Grabielle S, Moulet A, Forget N, Crozatier V, Coudreau S, Herzog R, Oksenhendler T, Cornaggia C, Gobert O 2011 Nucl. Instrum. Methods Phys. Res. Sect. A 653 121
[28] Oksenhendler T, Coudreau S, Forget N, Crozatier V, Grabielle S, Herzog R, Gobert O, Kaplan D 2010 Appl. Phys. B 99 7
[29] Moulet A, Grabielle S, Cornaggia C, Forget N, Oksenhendler T 2010 Opt. Lett. 35 3856
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[1] Daido H, Nishiuchi M, Pirozhkov A S 2012 Rep. Prog. Phys. 75 056401
[2] Malka V, Faure J, Gauduel Y A, Lefebvre E, Rousse A, Phuoc K T 2008 Nat. Phys. 4 447
[3] Fang Z B, Cheng C F, Zhang X M, Shen B F 2005 Chin. Phys. B 14 1850
[4] Dong K G, Gu Y Q, Zhu B, Wu Y C, Cao L F, He Y L, Liu H J, Hong W, Zhou W M, Zhao Z Q, Jiao C Y, Wen X L, Zhang B H, Wang X F 2010 Acta Phys. Sin. 59 8738 (in Chinese) [董克攻, 谷渝秋, 朱斌, 吴玉迟, 曹磊峰, 何颖玲, 刘红杰, 洪伟, 周维民, 赵宗清, 焦春晔, 温贤伦, 张保汉, 王晓方 2010 59 8738]
[5] Tan F, Zhu B, Han D, Xin J T, Zhao Z Q, Cao L F, Gu Y Q, Zhang B H 2014 Chin. Phys. B 23 034104
[6] Ge Y C, He H P 2014 Chin. Phys. B 23 074207
[7] Kapteyn H C, Murnane M M, Szoke A, Falcone R W 1991 Opt. Lett. 16 490
[8] Hong K H, Hou B, Nees J A, Power E, Mourou G A 2005 Appl. Phys. B 81 447
[9] Jovanovic I, Barty C P J, Haefner C, Wattellier B 2006 Opt. Lett. 31 787
[10] Yoshida H, Ishii E, Kodama R, Fujita H, Kitagawa Y, Izawa Y, Yamanaka T 2003 Opt. Lett. 28 257
[11] Ross I N, Collier J L, Matousek P, Danson C N, Neely D, Allott R M, Pepler D A, Hernandez G C, Osvay K 2000 Appl. Opt. 39 2422
[12] Liu C, Wang Z H, Li W C, Liu F, Wei Z Y 2010 Acta Phys. Sin. 59 7036 (in Chinese) [刘成, 王兆华, 李伟昌, 刘峰, 魏志义 2010 59 7036]
[13] Wang J Z, Huang Y S, Xu Y, Li Y Y, Lu X M, Leng Y X 2012 Acta Phys. Sin. 61 094214 (in Chinese) [王建州, 黄延穗, 许毅, 李妍妍, 陆效明, 冷雨欣 2012 61 094214]
[14] Jullien A, Albert O, Burgy F, Hamoniaux G, Rousseau J P, Chambaret J P, Augé-Rochereau F, Chériaux G, Etchepare J, Minkovski N, Saltiel S M 2005 Opt. Lett. 30 920
[15] Chvykov V, Rousseau P, Reed S, Kalinchenko G, Yanovsky V 2006 Opt. Lett. 31 1456
[16] Jullien A, Canova L, Albert O, Boschetto D, Antonucci L, Cha Y H, Rousseau J P, Chaudet P, Chériaux G, Etchepare J, Kourtev S, Minkovski N, Saltiel S M 2007 Appl. Phys. B 87 595
[17] Canova L, Albert O, Forget N, Mercier B, Kourtev S, Minkovski N, Saltiel S M, Lopez-Martens R 2008 Appl. Phys. B 93 443
[18] Jullien A, Durfee C G, Trisorio A, Canova L, Rousseau J P, Mercier B, Antonucci L, Chériaux G, Albert O, Lopez-Martens R 2009 Appl. Phys. B 96 293
[19] Cotel A, Jullien A, Forget N, Albert O, Chériaux G, Leblanc C 2006 Appl. Phys. B 83 7
[20] Jullien A, Kourtev S, Albert O, Chériaux G, Etchepare J, Minkovski N, Saltiel S M 2006 Appl. Phys. B 84 409
[21] Canova L, Kourtev S, Minkovski N, Jullien A, Lopez-Martens R, Albert O, Saltiel S M 2008 Appl. Phys. Lett. 92 231102
[22] Ricci A, Silva F, Jullien A, Cousin S L, Austin D R, Biegert J, Lopez-Martens R 2013 Opt. Express 21 9711
[23] Ramirez L P, Papadopoulos D N, Pellegrina A, Georges P, Druon F, Monot P, Ricci A, Jullien A, Chen X, Rousseau J P, Lopez-Martens R 2011 Opt. Express 19 93
[24] Jullien A, Albert O, Chériaux G, Etchepare J, Kourtev S, Minkovski N, Saltiel S M 2005 J. Opt. Soc. Am. B 22 2635
[25] Minkovski N, Petrov G I, Saltiel S M, Albert O, Etchepare J 2004 J. Opt. Soc. Am. B 21 1659
[26] Trebino R 2002 Frequency-Resolved Optical Gating: The Measurement of Ultrashort Laser Pulses (Boston: Kluwer Academic Publishers) pp16-17
[27] Grabielle S, Moulet A, Forget N, Crozatier V, Coudreau S, Herzog R, Oksenhendler T, Cornaggia C, Gobert O 2011 Nucl. Instrum. Methods Phys. Res. Sect. A 653 121
[28] Oksenhendler T, Coudreau S, Forget N, Crozatier V, Grabielle S, Herzog R, Gobert O, Kaplan D 2010 Appl. Phys. B 99 7
[29] Moulet A, Grabielle S, Cornaggia C, Forget N, Oksenhendler T 2010 Opt. Lett. 35 3856
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