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Grating-stabilized external cavity diode lasers for raman spectroscopy-A review

机译:光栅稳定的拉曼光谱外腔二极管激光器-A评论

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摘要

Conventional Raman techniques require a continuous-wave laser with stabilized wavelength, narrow line width, and sufficient output power. Due to their miniature size and low cost, diode lasers are good choice as light sources for Raman spectroscopy, especially when compact and portable instruments are needed. However, a solitary multimode diode laser has certain drawbacks that limit its use for Raman application. To circumvent these drawbacks, an external cavity can be coupled to the active gain medium of the diode to enhance the laser performance. A grating-based external cavity allows the laser to operate in a single longitudinal mode with greatly reduced line width and stabilized wavelength. This article examines the fundamentals of semiconductor lasers to show the necessity of operating diode lasers in an external cavity for Raman applications. Two feedback grating-based external cavity diode laser (ECDL) designs, viz. Littrow and Littman-Metcalf configurations, are explained. Historic and recent progress in the development of ECDL devices is reported. An updated summary of ECDL-equipped Raman systems applied to fields such as in vivo biomedical studies and in situ process/quality control is provided. Topics on mode-hop-free continuous scanning, wavelength stabilization, and dealing with ambient conditions are discussed.
机译:传统的拉曼技术需要具有稳定波长,窄线宽和足够输出功率的连续波激光器。由于其体积小,成本低,二极管激光器是拉曼光谱仪的理想选择,特别是在需要紧凑和便携式仪器的情况下。但是,孤立的多模二极管激光器具有某些缺点,限制了其在拉曼应用中的使用。为了克服这些缺点,可以将外腔耦合到二极管的有源增益介质,以增强激光性能。基于光栅的外腔使激光器能够以单纵模工作,线宽大大减小,波长稳定。本文研究了半导体激光器的基本原理,以显示在拉曼应用中在外腔中操作二极管激光器的必要性。两个基于反馈光栅的外腔二极管激光器(ECDL)设计。解释Littrow和Littman-Metcalf配置。报告了ECDL设备开发的历史性和最新进展。提供了适用于诸如体内生物医学研究和原位过程/质量控制等领域的配备ECDL的拉曼系统的最新摘要。讨论了无跳模连续扫描,波长稳定和处理环境条件的主题。

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