Chiuri Andrea, Angelini Federico
Diagnostic and Metrology Laboratory, FSN-TECFIS-DIM Nuclear Fusion and Safety Technologies Department, ENEA Via Enrico Fermi 45, 00044 Frascati, Italy.
Sensors (Basel). 2021 Apr 7;21(8):2579. doi: 10.3390/s21082579.
Fast gating in Raman spectroscopy is used to reject the fluorescence contribution from the sample and/or the substrate. Several techniques have been set up in the last few decades aiming either to enhance the Raman signal (CARS, SERS or Resonant Raman scattering) or to cancel out the fluorescence contribution (SERDS), and a number of reviews have already been published on these sub-topics. However, for many reasons it is sometimes necessary to reject fluorescence in traditional Raman spectroscopy, and in the last few decades a variety of papers dealt with this issue, which is still challenging due to the time scales at stake (down to picoseconds). Fast gating (<1 ns) in the time domain allows one to cut off part of the fluorescence signal and retrieve the best Raman signal, depending on the fluorescence lifetime of the sample and laser pulse duration. In particular, three different techniques have been developed to accomplish this task: optical Kerr cells, intensified Charge Coupling Devices and systems based on Single Photon Avalanche Photodiodes. The utility of time domain fast gating will be discussed, and In this work, the utility of time domain fast gating is discussed, as well as the performances of the mentioned techniques as reported in literature.
拉曼光谱中的快速门控用于抑制来自样品和/或基底的荧光贡献。在过去几十年中已经建立了几种技术,其目的要么是增强拉曼信号(相干反斯托克斯拉曼散射、表面增强拉曼散射或共振拉曼散射),要么是消除荧光贡献(表面增强拉曼差谱),并且已经有许多关于这些子主题的综述发表。然而,由于多种原因,有时在传统拉曼光谱中需要抑制荧光,并且在过去几十年中,有各种各样的论文探讨了这个问题,由于所涉及的时间尺度(低至皮秒),这个问题仍然具有挑战性。时域中的快速门控(<1 ns)允许根据样品的荧光寿命和激光脉冲持续时间切断部分荧光信号并获取最佳拉曼信号。特别地,已经开发了三种不同的技术来完成这项任务:光学克尔盒、增强型电荷耦合器件和基于单光子雪崩光电二极管的系统。本文将讨论时域快速门控的效用,以及文献中报道的上述技术的性能。