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Rapid and adjustable shifted excitation Raman difference spectroscopy using a dual-wavelength diode laser at 785 nm

机译:使用双波长二极管激光器在785nm处快速和可调节的偏移激励拉曼差异光谱

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In this paper, we present rapid and adjustable shifted excitation Raman difference spectroscopy (SERDS). A dual - wavelength diode laser emitting at 785 nm is used as the excitation light source. Two laser resonators are realized in a single chip, and two distributed Bragg reflector gratings provide two excitation lines at 785 nm. For each laser line, an optical power of 170 mW is achieved. Two separate heater elements are implemented and are used to realize a flexible spectral distance up to 36 cm - 1. At selected spectral distances from 1 to 30 cm- 1, an alternating operation with modulation frequencies up to 100 Hz is performed and shows stable spectral properties including a narrow linewidth of 11 pm. Raman experiments are carried out using ethanol as the target substance and Irish cream as the test sample. Raman and SERDS spectra at the selected spectral distances are presented and discussed with respect to the analytes under study. The described alternating operation for SERDS is demonstrated with integration times down to 50 ms for a single Raman spectrum. A carefully selected spectral distance of 15 cm(-1) between both laser lines allows a discrimination of closely neighbored Raman bands of Irish cream and shows a 15 - fold improvement of the signal - to - background noise in the reconstructed SERDS spectra. The results demonstrate rapid and adjustable SERDS using a dual - wavelength diode laser as a potential tool for Raman applications such as real - time diagnostic during surgeries, in situ measurements, which require quick on - site decisions, and Raman experiments with strong background interferences, for example, from laser - induced fluorescence and ambient light.
机译:在本文中,我们呈现快速和可调​​节的偏移激励拉曼差异光谱(SERDS)。在785nm处发射的双波长二极管激光器用作激发光源。两个激光谐振器在单个芯片中实现,两个分布式布拉格反射器光栅在785nm处提供两个激励线。对于每个激光线,实现170mW的光功率。实现了两个单独的加热器元件,并用于实现高达36cm-1的柔性光谱距离。在从1到30cm-1的所选光谱距离处,执行高达100Hz的调制频率的交替操作并显示稳定的光谱属性包括11点狭窄的线宽。用乙醇作为靶物质和爱尔兰乳膏作为试验样品进行拉曼实验。在所选择的光谱距离处呈现并讨论了所选光谱距离的拉曼和SERDS光谱。对于单个拉曼光谱,将描述的用于SERDS的交替操作进行了对50ms的集成时间。两种激光线之间的仔细选择的光谱距离为15厘米(-1),允许识别爱尔兰奶油的紧密邻居拉曼带,并在重建的SERDS光谱中显示出的信号 - 背景噪声的15倍。结果展示了使用双波长二极管激光器作为拉曼应用的潜在工具,例如在手术期间的实时诊断,原位测量,这需要快速现场决策,以及强大的背景干扰的拉曼实验,以及强大的背景干扰,例如,来自激光诱导的荧光和环境光。

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