Novikov Alexander, Perevoschikov Stanislav, Usenov Iskander, Sakharova Tatiana, Artyushenko Viacheslav, Bogomolov Andrey
Art Photonics GmbH, Rudower Chaussee 46, 12489, Berlin, Germany.
Technische Universität Berlin, Straße Des 17. Juni 135, 10623, Berlin, Germany.
Sci Rep. 2024 Mar 28;14(1):7430. doi: 10.1038/s41598-024-57539-4.
A fiber probe has been developed that enables simultaneous acquisition of mid-infrared (MIR) and Raman spectra in the region of 3100-2600 cm. Multimodal measurement is based on a proposed ZrO crystal design at the tip of an attenuated total reflection (ATR) probe. Mid-infrared ATR spectra are obtained through a pair of chalcogenide infrared (CIR) fibers mounted at the base of the crystal. The probe enables both excitation and acquisition of a weak Raman signal from a portion of the sample in front of the crystal using an additional pair of silica fibers located in a plane perpendicular to the CIR fibers. The advantages of combining MIR and Raman spectra in a single probe have been discussed.
一种光纤探头已被开发出来,它能够在3100 - 2600厘米区域同时采集中红外(MIR)和拉曼光谱。多模态测量基于衰减全反射(ATR)探头尖端的一种新型氧化锆晶体设计。中红外ATR光谱通过安装在晶体底部的一对硫系红外(CIR)光纤获得。该探头使用位于垂直于CIR光纤平面的另一对石英光纤,能够激发并采集来自晶体前方一部分样品的微弱拉曼信号。本文讨论了在单个探头中结合MIR和拉曼光谱的优点。