Acta Optica Sinica, Volume. 30, Issue 11, 3354(2010)

Influence of Fluorescent Medium Optical Characteristics on Stimulated Raman Scattering

Sun Xiuping1、*, Cao Anyang1, Yu Miao1, Liu Mingbo1, Men Zhiwei2, Fang Wenhui2, Sun Chenglin2, Gao Shuqin2, Li Zuowei2, and Yang Jiange2,3
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    References(27)

    [1] [1] Zhang Yizhu, Chen Yanping, Li Zhiqiang et al.. Elliptical polarized single-cycle THz pulse generated by femtosecond laser filamentation in air [J]. Acta Optica Sinica, 2009, 29(3): 781~785

    [5] [5] Sun Xiuping, Feng Kecheng, Zhang Xihe et al.. Study on temperature character of stimulated Raman scattering spectrum in silica fiber[J]. Spectroscopy and Spectral Analysis, 2007, 27(10): 2049~2052

    [6] [6] Sun Xiuping, Feng Kecheng, Zhang Xihe et al.. Study of Raman scattering of plastic optical fiber [J]. Spectroscopy and Spectral Analysis, 2005, 25(12): 2002~2004

    [8] [8] R. H. Stolen, E. P. Ippen. Raman gain in glass optical waveguides[J]. Appl. Phys. Lett., 1973, 22(6): 276~278

    [9] [9] R. H. Stolen, J. P. Gordon, W. J. Tomlinson. Raman response function of silica-core fibers[J]. J. Opt. Soc. Am. B, 1989, 6(6): 1159~1166

    [10] [10] Antonio Picozzi, Carlos Montes, Jean Botineau et al.. Inertial model for stimulated Raman scattering inducing chaotic dynamics[J]. J. Opt. Soc. Am. B, 1998, 15(4): 1309~1314

    [11] [11] D. Hollenbeck, C. D. Cantrell. Multiple-vibrational-mode model for fiber-optic Raman gain spectrum and response function[J]. J. Opt. Soc. Am. B, 2002, 19(12): 2886~2892

    [12] [12] A. S. Kwok, R. K. Chang. Fluorescence seeding of weaker-gain Raman modes in microdroplets: enhancement of stimulated Raman scattering,[J]. Opt. Lett., 1992, 17(18): 1262~1264

    [13] [13] A. Biswas, R. L. Armstrong, R. G. Pinnick. Stimulated Raman-scattering threshold behavior of binary mixture micrometer-sized droplets[J]. Opt. Lett., 1990, 15(21): 1191~1193

    [14] [14] Pu Xiaoyun, Yang Zheng, Jiang Nan et al.. Observation of stimulated Raman scattering of weak-gain Raman modes by means of lasing gain[J]. Acta Physica Sinica, 2003, 52(10): 2443~2448

    [15] [15] Zuo Jian, Li Zuowei, Tian Yanjie et al.. The influence of absorption and fluorescence from the solution on the stimulated Raman threshold of CS2 in liquid-core optical fiber[J]. Acta Physica Sinica, 2007, 56(2): 889~894

    [16] [16] Zhong Xianqiong, Chen Xiaobo, Jin Lihong et al.. Experiment investigation on enhancement of stimulated Raman scattering by dye fluorescence [J]. Chinese J. Light Scattering, 1999, 11(4): 293~296

    [17] [17] Zhong Xiaoqiong, Yang Jinguo, Ha Yuanqing et al.. Enhance-ment of high-order stimulated Raman scattering of carbon disulfide by using fluoresence of dye rhodamine B [J]. High Power Laser And Particle Beams, 2000, 12(2): 172~174

    [18] [18] R. A. Lemons, C. F. Quate. Acoustic microscope-scanning version[J]. Appl. Phys. Lett., 1975, 24(4): 163~165

    [19] [19] Li Zuowei, Li Jinan, Gao Suqin. Resonance Raman spectrum of β-carotene in liquid-core optical fiber[J]. Jpn. J. Appl. Phys., 1998, 37: 1889~1891

    [20] [20] Z. W. Li, S. Q. Gao, X. P. Sun et al.. Effect of optical fiber loss on resonance Raman spectra of samples with low concentration [J]. Spectrosc. Lett., 2001, 34: 569~578

    [21] [21] Y. R. Shen. The Principles of Nonlinear Optics[M]. New York: Wiley, 2003. 152

    [22] [22] A. B. Bhattacherjee. Estimation of resonant third-order hyperpolarizability of beta-carotene from Raman and absorption spectroscopy[J]. Bulg. J. Phys., 1998, 25(3-4): 166~170

    [23] [23] Y. J. Tian, J. Zuo, L. Y. Zhang et al.. Study of resonance Raman cross section of aqueous β-carotene at low concentrations[J]. Appl. Phys. B, 2007, 87(7): 727~730

    [24] [24] S. R. Marder, W. E. Torruellas, M. Blanchard-Desce et al.. Large molecular third-order optical nonlinearities in polarized carotenoids[J]. Science, 1997, 276(5316): 1233~1236

    [25] [25] Zhiwei Men, Wenhui Fang, Yunfeng Ding et al.. Stimulated Raman scattering influenced by concentration, fluorescence profile and bandwidth of β-carotene in liquid-core optical fiber[J]. J. Raman Spectrosc., 2009, 40(8): 1039~1042

    [26] [26] Men Zhiwei, Sun Xiuping, Fang Wenhui et al.. Influence of amplified spontaneous emission and fluorescence of β-carotene on stimulated Raman scattering of carbon disulfide[J]. Sci. China Ser. G: Phys. Mech. Astron., 2009, 52(4): 529~533

    [27] [27] Zhiwei Men, Wenhui Fang, ZuoWei Li et al.. Growth profile of stimulated Raman anti-Stokes scattering influenced by fluorescence seeding in liquid-core optical fiber[J]. J. Raman Spectrosc., 2010, 41(1): 49~52

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    Sun Xiuping, Cao Anyang, Yu Miao, Liu Mingbo, Men Zhiwei, Fang Wenhui, Sun Chenglin, Gao Shuqin, Li Zuowei, Yang Jiange. Influence of Fluorescent Medium Optical Characteristics on Stimulated Raman Scattering[J]. Acta Optica Sinica, 2010, 30(11): 3354

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    Paper Information

    Category: Spectroscopy

    Received: Oct. 28, 2009

    Accepted: --

    Published Online: Nov. 16, 2010

    The Author Email: Xiuping Sun (sxiup@yahoo.com.cn)

    DOI:10.3788/aos20103011.3354

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