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Communication: Hybrid femtosecond/picosecond rotational coherent anti-Stokes Raman scattering thermometry using a narrowband time-asymmetric probe pulse

机译:通信:使用窄带时间非对称探测脉冲的飞秒/皮秒混合旋转相干反斯托克斯拉曼散射测温法

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摘要

A narrowband, time-asymmetric probe pulse is introduced into the hybrid femtosecond/picosecond rotational coherent anti-Stokes Raman scattering (fs/ps RCARS) technique to provide accurate and precise single-shot, high-repetition-rate gas-phase thermometric measurements. This narrowband pulse-generated by inserting a Fabry-Pérot étalon into the probe-pulse beam path-enables frequency-domain detection of pure-rotational transitions. The unique time-asymmetric nature of this pulse, in turn, allows for detection of resonant Raman-active rotational transitions free of signal contamination by nonresonant four-wave-mixing processes while still allowing detection at short probe-pulse delays, where collisional dephasing processes are negligible. We demonstrate that this approach provides excellent single-shot thermometric accuracy (1 error) and precision (∼2.5) in gas-phase environments.
机译:飞秒/皮秒旋转相干反斯托克斯拉曼散射(fs / ps RCARS)技术中引入了窄带,时间不对称的探测脉冲,以提供准确和精确的单脉冲,高重复率气相温度测量。这种窄带脉冲是通过将Fabry-Pérotétalon插入探测脉冲束路径而产生的,从而实现了纯旋转跃迁的频域检测。该脉冲具有独特的时间非对称特性,因此可以检测共振拉曼主动旋转跃迁,而不受非共振四波混频过程的信号污染,同时仍允许在短的探测脉冲延迟下进行检测,其中发生了相移过程可以忽略不计。我们证明了这种方法在气相环境下具有出色的单次测温精度(1个误差)和精度(〜2.5)。

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