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基于啁啾检测的宽带脉冲受激拉曼散射

Broadband Impulsive Stimulated Raman Scattering Based on a Chirped Detection.

作者信息

Batignani Giovanni, Ferrante Carino, Fumero Giuseppe, Scopigno Tullio

机构信息

Dipartimento di Fisica , Universitá di Roma "La Sapienza" , Roma I-00185 , Italy.

Istituto Italiano di Tecnologia , Center for Life Nano Science @Sapienza , Roma I-00161 , Italy.

出版信息

J Phys Chem Lett. 2019 Dec 19;10(24):7789-7796. doi: 10.1021/acs.jpclett.9b03061. Epub 2019 Dec 5.

Abstract

In impulsive stimulated Raman scattering, vibrational oscillations, coherently stimulated by a femtosecond Raman pulse, are monitored in real time and read out as intensity modulations in the transmission of a temporally delayed probe pulse. Critically, in order to retrieve broadband Raman spectra, a fine sampling of the time delays between the Raman and probe pulses is required, making conventional ISRS ineffective for probing irreversible phenomena and/or weak scatterers typically demanding long acquisition times, with signal-to-noise ratios that crucially depend on the pulse fluences and overlap stabilities. To overcome such limitations, here we introduce the chirped-based impulsive stimulated raman scattering (CISRS) technique. Specifically, we show how introducing a chirp in the probe pulse can be exploited for recording the Raman information without the need to scan over the Raman-probe pulse delay. We then experimentally demonstrate with a few examples how to use the introduced scheme to measure Raman spectra.

摘要

在脉冲受激拉曼散射中,由飞秒拉曼脉冲相干激发的振动振荡被实时监测,并作为时间延迟探测脉冲传输中的强度调制读出。至关重要的是,为了获取宽带拉曼光谱,需要对拉曼脉冲和探测脉冲之间的时间延迟进行精细采样,这使得传统的脉冲受激拉曼散射对于探测通常需要长时间采集且信噪比严重依赖于脉冲能量和重叠稳定性的不可逆现象和/或弱散射体无效。为了克服这些限制,我们在此引入基于啁啾的脉冲受激拉曼散射(CISRS)技术。具体而言,我们展示了如何利用在探测脉冲中引入啁啾来记录拉曼信息,而无需扫描拉曼 - 探测脉冲延迟。然后,我们通过几个例子进行实验演示,说明如何使用所引入的方案来测量拉曼光谱。

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