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Stimulated Raman scattering of benzene is studied in liquid-core fiber. Owing to fluorescence and third-order nonlinear 4-sulfphenyl porphyin, the high-order stimulated Raman scattering, such as sixth-order Stokes line of benzene, can be observed at a relatively low input-laser power. The threshold of high Stokes line is lowered with the addition of the 4-sulfphenyl porphyin when the concentration of solution is within 10-6 and 10-9 mol/L. At the same time, the Stokes line width becomes narrow with Stokes line order increasing. These results are expected to be applied to tunable laser, seeding laser, biological molecular structures and biological molecule used in none biological area.
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Keywords:
- stimulated Raman scattering /
- fluorescence /
- liquid-core optical fiber
[1] Carruthers T F, Duling I N, Horowitz M, Menyuk C R 2000 Opt. Lett. 25 153
[2] Dirdapt, Millot G, Wabnicz S 1998 J. Opt. Soc. Am. B 15 1433
[3] [4] Xu B, Yue G M, Zhang Y C, Hu H L, Zhou J, Hu S X 2003 Chin. Phys. 12 1021
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[8] [9] Zhang J T 2005 Chin. Phys. 14 169
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[12] [13] Stone J 1974 Appl. Phys.Lett. 24 163
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[18] [19] Cheng J, He Y H, Zuo H Y, Yang J G 2005 Acta Photon. Sin. 34 379(in Chinese) [程 娟、贺应红、左浩毅、杨经国 2005 光子学报 34 379]
[20] [21] Zheng S X 1985 Laser Raman Spectroscopy (Shanghai: Shanghai Science and Technology Press) p270 (in Chinese)[郑顺旋 1985 激光拉曼光谱 (上海:上海科学技术出版社) 第270页]
[22] [23] Zuo H Y, Dong W B, Zhu S F 2008 Laser Phys. 18 819
[24] Men Z W, Fang W H, Ding Y F, Sun X P, Li Z W, Cao B, Zuo J, Gao S Q, Li D F 2009 J. Raman Spectrosc. 40 1039
[25] [26] [27] Zuo J, Li Z W, Tian Y J, Cheng J, Gao S Q, Lu G H 2007 Acta Phys. Sin. 56 889 (in Chinese)[左 剑、里佐威、田艳杰、陈键、高淑琴、陆国会 2007 56 889]
[28] [29] Ippen E P 1970 Appl.Phys. Lett. 16 308
[30] [31] Agrawal G P 2002 Nonlinear Fiber Optics and Application of Nonlinear Fiber Optics (Beijing: Publishing House of Electronics Industry) p203 (中译本)
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[1] Carruthers T F, Duling I N, Horowitz M, Menyuk C R 2000 Opt. Lett. 25 153
[2] Dirdapt, Millot G, Wabnicz S 1998 J. Opt. Soc. Am. B 15 1433
[3] [4] Xu B, Yue G M, Zhang Y C, Hu H L, Zhou J, Hu S X 2003 Chin. Phys. 12 1021
[5] [6] [7] Ippen E P 1970 Appl. Phys. Lett. 16 308
[8] [9] Zhang J T 2005 Chin. Phys. 14 169
[10] [11] Dharmadhikari J A, Dharmadhikari A K, Mishra A, Ravindra Kumar G 2003 Appl.Phys. B 76 755
[12] [13] Stone J 1974 Appl. Phys.Lett. 24 163
[14] [15] Zhong X Q, Cheng X B, Jin L H, Yang J G 2000 Chin. J. Light Scatt. 11 293 (in Chinese) [钟先琼、陈小波、靳丽红、杨经国 2000 光散射学报 11 293]
[16] [17] Pu X Y, Yang R, Wang Y L, Chen T J, Jiang N 2004 Acta Phys. Sin. 53 2509 (in Chinese) [普小云、杨 睿、王亚丽、陈天江、江 南 2004 53 2509]
[18] [19] Cheng J, He Y H, Zuo H Y, Yang J G 2005 Acta Photon. Sin. 34 379(in Chinese) [程 娟、贺应红、左浩毅、杨经国 2005 光子学报 34 379]
[20] [21] Zheng S X 1985 Laser Raman Spectroscopy (Shanghai: Shanghai Science and Technology Press) p270 (in Chinese)[郑顺旋 1985 激光拉曼光谱 (上海:上海科学技术出版社) 第270页]
[22] [23] Zuo H Y, Dong W B, Zhu S F 2008 Laser Phys. 18 819
[24] Men Z W, Fang W H, Ding Y F, Sun X P, Li Z W, Cao B, Zuo J, Gao S Q, Li D F 2009 J. Raman Spectrosc. 40 1039
[25] [26] [27] Zuo J, Li Z W, Tian Y J, Cheng J, Gao S Q, Lu G H 2007 Acta Phys. Sin. 56 889 (in Chinese)[左 剑、里佐威、田艳杰、陈键、高淑琴、陆国会 2007 56 889]
[28] [29] Ippen E P 1970 Appl.Phys. Lett. 16 308
[30] [31] Agrawal G P 2002 Nonlinear Fiber Optics and Application of Nonlinear Fiber Optics (Beijing: Publishing House of Electronics Industry) p203 (中译本)
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