[1] VERDIECK J F, HALL R J, ECKBRETH A C, et al. Electronically resonant CARS detection of OH[C]//Thermophysics Conference.Seattle, USA: Stanford University, 1982: 25-26.
[2] ZHAO J R, LI Ch J. Measurements of temperature distribution in a counterflow diffusion flame by USED CARS[J]. Laser Technology, 1997, 21(4):218-222(in Chinese).
[3] LANG T, MOTZKUS M, FREY H M, et al. High resolution femtosecond coherent anti-Stokes Raman scattering: Determination of rotational constants, molecular anharmonicity, collisional line shifts, and temperature[J]. Journal of Chemical Physics, 2001, 115(12):5418-5426. doi: 10.1063/1.1397325
[4] STAUFFER H U, KULATILAKA W D, GORD J R, et al. Laser-induced fluorescence detection of hydroxyl (OH) radical by femtosecond excitation[J]. Optics Letters, 2011, 36(10):1776-1778.
[5] RICHTER M, LI Z S, ALDEN M. Application of two-photon laser-induced fluorescence for single-shot visualization of carbon monoxide in a spark ignited engine[J]. Applied Spectroscopy, 2007, 61(1):1-5.
[6] KOTZAGIANNI M, COURIS S. Femtosecond laser induced breakdown for combustion diagnostics[J]. Applied Physics Letters, 2012, 100(26):228-232.
[7] BAUDELET M, GUYON L, YU J, et al. Spectral signature of native CN bonds for bacterium detection and identification using femtosecond laser-induced breakdown spectroscopy[J]. Applied Physics Letters, 2006, 88(6):063901. doi: 10.1063/1.2170437
[8] TIAN Zh H, DONG M R, LU J D, et al. Laser-induced breakdown spectroscopy in spatial distribution of methane laminar diffusion flame[J]. Laser Technology, 2018, 42(1):60-65(in Chinese).
[9] SPENCE D E, KEAN P N, SIBBETT W. 60fsec pulse generation from a self-mode-locked Ti:sapphire laser[J]. Optics Letters, 1991, 16(1): 42-44. doi: 10.1364/OL.16.000042
[10] de MAZIERE M, SCHOEMAKER D. Phase modulation technique for eliminating phase noise in picosecond t2 measurements based on stimulated raman gain[J]. Journal of Applied Physics, 1985, 58(4): 1439-1449. doi: 10.1063/1.336073
[11] BACKUS S, DURFEE C G, MURNANE M M, et al. High power ultrafast lasers[J]. Review of Scientific Instruments, 1998, 69(3): 1207-1223. doi: 10.1063/1.1148795
[12] VERHOEF A J, SERES J, SCHMID K, et al. Compression of the pulses of a Ti:sapphire laser system to 5 femtoseconds at 0.2 terawatt level[J]. Applied Physics, 2006, B82(4): 513-517.
[13] GERARD A M, VICTOR Y. Relativistic optics: A gateway to attosecond physics[J]. Optics & Photonics News, 2004, 15(5): 40-45.
[14] YU J, JIANG H B, WEN J, et al. Mechanism of depolarization of white light generated by femtosecond laser pulse in water[J]. Optics Express, 2010, 18(12):12581. doi: 10.1364/OE.18.012581
[15] LU P F, WU J, ZENG H P. Manipulation of plasma grating by impulsive molecular alignment[J]. Applied Physics Letters, 2013, 103(22):221113. doi: 10.1063/1.4837035
[16] XI T T, LU X, ZHANG J. Interaction of light filaments generated by femtosecond laser pulses in air[J]. Physical Review Letters, 2006, 96(2):025003. doi: 10.1103/PhysRevLett.96.025003
[17] JU J J, LIU J Sh, WANG Ch, et al. Laser-filamentation-induced condensation and snow formation in a cloud chamber[J]. Optics Letters, 2012, 37(7):1214. doi: 10.1364/OL.37.001214
[18] LI H L, XU H L, YANG B S, et al. Sensing combustion intermediates by femtosecond filament excitation[J]. Optics Letters, 2013, 38(8):1250. doi: 10.1364/OL.38.001250
[19] LI H L, CHU W, ZANG H W, et al. Critical power and clamping intensity inside a filament in a flame[J]. Optics Express, 2016, 24(4):3424. doi: 10.1364/OE.24.003424
[20] LI HE L, CHU W, XU H L, et al. Simultaneous identification of multi-combustion-intermediates of alkanol-air flames by femtosecond filament excitation for combustion sensing[J]. Scientific Reports, 2016, 6:27340. doi: 10.1038/srep27340
[21] SUN X D, GAO H, ZENG B, et al. Multiple filamentation generated by focusing femtosecond laser with axicon[J]. Optics Letters, 2012, 37(5):857. doi: 10.1364/OL.37.000857
[22] ALSHERSHBY M, REN Y, QIN J, et al. Diagnosis of femtosecond plasma filament by channeling microwaves along the filament[J]. Applied Physics Letters, 2013, 102(20):73-75.
[23] YAO J P, XIE H Q, ZENG B, et al. Gain dynamics of a free-space nitrogen laser pumped by circularly polarized femtosecond laser pulses[J]. Optics Express, 2014, 22(16): 19005-19013. doi: 10.1364/OE.22.019005
[24] WEI X Y, TU Zh W, LIU Ch, et al. Differentiation of positional isomers of propyl alcohols using filament-induced fluorescence[J]. Chinese Physics Letters, 2016, 33(5):35-38.
[25] CHU W, LI H L, NI J L, et al. Lasing action induced by femtose-cond laser filamentation in ethanol flame for combustion diagnosis[J]. Applied Physics Letters, 2014, 104(9):091106. doi: 10.1063/1.4867503
[26] ZHANG H S, JING Ch R, YAO J P, et al. Rotational coherence encoded in an "air-laser" spectrum of nitrogen molecular ions in an intense laser field[J]. Physical Review, 2013, X3(4): 041009.
[27] XIE H Q, LI G H, YAO J P, et al. Mid-infrared ultrafast laser pulses induced third harmonic generation in nitrogen molecules on an excited state[J]. Scientific Reports, 2015, 5(1):16006. doi: 10.1038/srep16006
[28] CHU W, LI G H, XIE H Q, et al. A self-induced white light seed-ing laser in a femtosecond laser filament[J]. Laser Physics Letters, 2014, 11(1):015301. doi: 10.1088/1612-2011/11/1/015301