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Single-shot gas-phase thermometry using purerotational hybrid femtosecond/picosecond coherent anti-Stokes Raman scattering

机译:使用纯旋转飞秒/皮秒相干反斯托克斯拉曼散射的单次气相测温

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摘要

High-repetition-rate, single-laser-shot measurements are important for the investigation of unsteady flows where temperature and species concentrations can vary significantly. Here, we demonstrate singleshot, pure-rotational, hybrid femtosecond/picosecond coherent anti-Stokes Raman scattering (fs/ps RCARS) thermometry based on a kHz-rate fs laser source. Interferences that can affect nanosecond (ns) and ps CARS, such as nonresonant background and collisional dephasing, are eliminated by selecting an appropriate time delay between the 100-fs pump/Stokes pulses and the pulse-shaped 8.4-ps probe. A time- and frequency-domain theoretical model is introduced to account for rotational-level dependent collisional dephasing and indicates that the optimal probe-pulse time delay is 13.5 ps to 30 ps. This time delay allows for uncorrected best-fit N2- RCARS temperature measurements with ~1% accuracy. Hence, the hybrid fs/ps RCARS approach can be performed with kHz-rate laser sources while avoiding corrections that can be difficult to predict in unsteady flows.
机译:高重复率,单次激光发射的测量对于研究温度和物质浓度可能发生显着变化的非稳定流动非常重要。在这里,我们演示了基于kHz速率fs激光源的单脉冲,纯旋转,混合飞秒/皮秒相干反斯托克斯拉曼散射(fs / ps RCARS)测温法。通过在100-fs泵/斯托克斯脉冲和脉冲形8.4-ps探头之间选择适当的时间延迟,可以消除可能影响纳秒(ns)和ps CARS的干扰,例如非共振本底和碰撞相移。引入了时域和频域理论模型来说明与旋转水平有关的相移,并指出最佳探测脉冲时延为13.5 ps至30 ps。此时间延迟允许未经校正的最佳拟合N2-RCARS温度测量,精度约为1%。因此,可以使用kHz速率激光源执行fs / ps RCARS混合方法,同时避免了在不稳定流量中难以预测的校正。

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