Bonati Chiara, Fay Victoria, Dornier Rémy, Loterie Damien, Moser Christophe
Opt Express. 2022 Aug 1;30(16):28601-28613. doi: 10.1364/OE.461246.
Shifted Excitation Raman Difference Spectroscopy (SERDS) is a non-destructive chemical analysis method capable of removing the fluorescence background and other disturbances from the Raman spectrum, thanks to the independence of the fluorescence with respect to the small difference in excitation wavelength. The spectrum difference is computed in a post-processing step. Here, we demonstrate the use of a lock-in camera to obtain an on-line analog SERDS spectra allowing longer exposure times and no saturation, leading to an improved Signal-to-Noise Ratio (SNR) and reduced data storage. Two configurations are presented: the first one uses a single laser and can remove excitation-independent disturbances, such as ambient light; the second employs two-wavelength shifted sources and removes fluorescence background similarly to SERDS. In both cases, we experimentally extrapolate the expected SNR improvement.
位移激发拉曼差分光谱法(SERDS)是一种无损化学分析方法,由于荧光相对于激发波长的微小差异具有独立性,该方法能够去除拉曼光谱中的荧光背景和其他干扰。光谱差异在后期处理步骤中计算得出。在此,我们展示了使用锁相相机来获取在线模拟SERDS光谱,其允许更长的曝光时间且不会饱和,从而提高了信噪比(SNR)并减少了数据存储量。本文介绍了两种配置:第一种使用单个激光器,能够去除与激发无关的干扰,如环境光;第二种采用双波长位移光源,与SERDS类似地去除荧光背景。在这两种情况下,我们都通过实验推断出预期的信噪比提升。