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Probe-pulse optimization for nonresonant suppression in hybrid fs/ps coherent anti-Stokes Raman scattering at high temperature

机译:高温下fs / ps相干反斯托克斯拉曼散射中非共振抑制的探测脉冲优化

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摘要

Hybrid femtosecond/picosecond coherent anti-Stokes Raman scattering (fs/ps CARS) offers accurate thermometry at kHz rates for combustion diagnostics. In high-temperature flames, selection of probe-pulse characteristics is key to simultaneously optimizing signal-to-nonresonant-background ratio, signal strength, and spectral resolution. We demonstrate a simple method for enhancing signal-to-nonresonant-background ratio by using a narrowband Lorentzian filter to generate a time-asymmetric probe pulse with full-width-half-maximum (FWHM) pulse width of only 240 fs. This allows detection within just 310 fs after the Raman excitation for eliminating nonresonant background while retaining 45% of the resonant signal at 2000 K. The narrow linewidth is comparable to that of a time-symmetric sinc2 probe pulse with a pulse width of ~2.4 ps generated with a conventional 4-f pulse shaper. This allows nonresonant-background-free, frequency-domain vibrational spectroscopy at high temperature, as verified using comparisons to a time-dependent theoretical fs/ps CARS model.
机译:飞秒/皮秒相干相干反斯托克斯拉曼散射(fs / ps CARS)可在kHz速率下提供精确的测温,以进行燃烧诊断。在高温火焰中,选择探针脉冲特性是同时优化信噪比,信号强度和频谱分辨率的关键。我们演示了一种简单的方法,可通过使用窄带洛伦兹滤波器来生成时间不对称的探查脉冲,以提高信号与非谐振本底比,该探查脉冲的半峰全宽(FWHM)脉冲宽度仅为240 fs。这样就可以在拉曼激发之后的310 fs内进行检测,以消除非共振本底,同时在2000 K时保持45%的共振信号。窄线宽可与时间对称的sinc2探针脉冲的线宽相比,脉冲宽度约为2.4 ps用传统的4-f脉冲整形器生成。通过与时间相关的理论fs / ps CARS模型进行比较来验证,这允许在高温下进行非共振无背景,频域振动光谱分析。

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