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Diode-pumped broadband vertical-external-cavity surface-emitting semiconductor laser-application to high sensitivity intracavity absorption spectroscopy

机译:二极管泵浦宽带垂直外腔表面发射半导体激光应用于高灵敏度的内部吸收光谱

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Absorption spectroscopy is widely used in the laboratory and for in situ measurements. One of the most important issues of any monitoring technique, as important as the sensitivity, is the ability to provide absolute absorption coefficients without the need for complicated and cumbersome calibration procedures. IntraCavity-Laser-Absorption-Spectroscopy (ICLAS) is one of the most sensitive techniques capable of providing this absolute information. In the ICLAS technique an absorbing medium with absorption lines narrower than the broadband spectrum of a laser is placed inside the laser cavity. The absorption lines follow the Lambert-Beer law, with an equivalent path length of L{sub}(eq) = ctg, where the generation time t{sub}g is the time from the beginning of the laser generation to the moment of observation, and c is the velocity of light. Any type of laser with a homogeneously broadened gain medium can be used. ICLAS allows extreme sensitivity, but, up to now, it has been limited mainly to the 0.6. 1μm range, with expensive and bulky systems.
机译:吸收光谱在实验室中广泛使用和用于原位测量。任何监测技术的最重要问题之一,与敏感度一样重要是提供绝对吸收系数的能力,而无需复杂和繁琐的校准程序。肠球菌激光吸收 - 光谱(ICLA)是能够提供这种绝对信息的最敏感的技术之一。在ICLAS技术中,吸收线的吸收介质比激光宽带频谱窄的吸收线放置在激光腔内。吸收线遵循Lambert-Beer Law,其中L {Sub}(EQ)= CTG的等效路径长度,其中生成时间T {Sub} G是从激光生成开始到观察时刻的时间,C是光的速度。可以使用具有均匀宽增益介质的任何类型的激光器。 ICLA允许极端敏感性,但是,到目前为止,它主要有限于0.6。 1μm范围,具有昂贵和笨重的系统。

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