[1] SCHNEIDER T, JUNKER M, LAUTERBACH K U. Time delay enhancement in stimulated-Brillouin-scattering-based slow-light systems[J]. Optics Letters,2007,32(3): 220-222.
[2] SHI J W, LI G X, GONG W P, et al. A lidar system based on stimulated Brillouin scattering[J]. Applied Physics,2007, B86(1): 177-179.
[3] SHI J W, OUYNAG M, GONG W P, et al. A Brillouin lidar system using F-P etalon and ICCD for remote sensing of the ocean[J]. Applied Physics,2008,B90(3): 569-571.
[4] GAO W, SUN D, BI Y F, et al. Stimulated Brillouin scattering with high reflectivity and fidelity in liquid-core optical fibers[J]. Applied Physics,2012, B107(2): 355-359.
[5] LIU D. Real time measurement of sound speed in sea water using Brillouin scattering[J]. Acta Acustica,1998,23(2): 184-188(in Chinese).
[6] LIU D H, WANG H Y, ZHOU J. Measurements of sound speed in sea water with different salinity and temperature by Brillouin scattering method[J]. Chinese Journal of Lasers,2000,27(4): 381-384(in Chinese).
[7] XU J F, REN X, GONG W P, et al. Measurement of the bulk viscosity of liquid by Brillouin scattering[J]. Applied Optics,2003,42(33): 6704-6709.
[8] HE X D, WEI H J, SHI J L, et al. Experimental measurement of bulk viscosity of water based on stimulated Brillouin scattering[J]. Optics Communications,2012,285(20): 4120-4124.
[9] HE X D, TANG Y J, SHI J L, et al. Investigation of the influence of temperature on threshold value and pulse duration of stimulated Brillouin scattering in liquid water[J]. Journal of Modern Optics,2012,59(16): 1410-1414.
[10] LU Z W, HASI W L J, GONG H P, et al. Generation of flat-top waveform by double optical limiting based on stimulated Brillouin scattering[J]. Optics Express,2006,14(12): 5497-5501.