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Dual-wavelength external cavity laser device for fluorescence suppression in Raman spectroscopy

机译:用于拉曼光谱中荧光抑制的双波长外腔激光装置

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Raman spectroscopy has been widely used in the detection of drugs, pesticides, explosives, food additives and environmental pollutants, for its characteristics of fast measurement, easy sample preparation, and molecular structure analyzing capability. However, fluorescence disturbance brings a big trouble to these applications, with strong fluorescence background covering up the weak Raman signals. Recently shifted excitation Raman difference spectroscopy (SERDS) not only can completely remove the fluorescence background, but also can be easily integrated into portable Raman spectrometers. Usually, SERDS uses two lasers with small wavelength gap to excite the sample, then acquires two spectra, and subtracts one to the other to get the difference spectrum, where the fluorescence background will be rejected. So, one key aspects of successfully applying SERDS method is to obtain a dual-wavelength laser source. In this paper, a dual-wavelength laser device design based on the principles of external cavity diode laser (ECDL) is proposed, which is low-cost and compact. In addition, it has good mechanical stability because of no moving parts. These features make it an ideal laser source for SERDS technique. The experiment results showed that the device can emit narrow-spectral-width lasers of two wavelengths, with the gap smaller than 2 nanometers. The laser power corresponding to each wavelength can be up to 100mW.
机译:拉曼光谱法具有测量速度快,样品制备简便,分子结构分析能力强等特点,已被广泛用于药物,农药,炸药,食品添加剂和环境污染物的检测。但是,荧光干扰给这些应用带来了很大的麻烦,因为强荧光背景掩盖了微弱的拉曼信号。最近转移的激发拉曼差光谱仪(SERDS)不仅可以完全消除荧光背景,而且可以轻松地集成到便携式拉曼光谱仪中。通常,SERDS使用两个具有小波长间隙的激光器来激发样品,然后获取两个光谱,然后将另一个相减以获得差异光谱,从而拒绝荧光背景。因此,成功应用SERDS方法的一个关键方面是获得双波长激光源。本文提出了一种基于外腔二极管激光器(ECDL)原理的双波长激光器装置,该装置成本低廉,结构紧凑。此外,由于没有活动部件,因此具有良好的机械稳定性。这些特性使其成为SERDS技术的理想激光源。实验结果表明,该装置可以发射两种波长的窄光谱激光,间隙小于2纳米。与每个波长相对应的激光功率可以高达100mW。

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