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Real-time spectroscopic sensing using a widely tunable External Cavity-QCL with MOEMS diffraction grating

机译:使用具有MOEMS衍射光栅的可广泛调谐的外部腔QCL进行实时光谱感测

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摘要

We present spectroscopic measurements performed with an EC-QCL combining a broadly tunable quantum cascade laser chip with a tuning range of more than 300 cm~(-1) and a resonantly driven MOEMS scanner with an integrated diffraction grating for wavelength selection in Littrow configuration. The grating geometry was optimized to provide high diffraction efficiency over the wide tuning range of the QCL, thus assuring high power density and high spectral resolution in the MIR range. The MOEMS scanner has a resonance frequency of 1 kHz, hence allowing for two full wavelength scans, one up and the other downwards, within 1 ms. The capability for real-time spectroscopic sensing based on MOEMS EC-QCLs is demonstrated by transmission measurements performed on polystyrene reference absorber sheets as well as on gaseous samples of carbon monoxide. For the latter one, a large portion of the characteristic CO absorption band containing several absorption lines in the range of 2070 cm~(-1) to 2280 cm~(-1) can be monitored in real-time.
机译:我们介绍了使用EC-QCL进行的光谱测量,该EC-QCL组合了可调范围超过300 cm〜(-1)的可广泛调谐的量子级联激光器芯片和带有集成衍射光栅的共振驱动MOEMS扫描仪,用于在Littrow配置中进行波长选择。光栅的几何形状经过优化,可在QCL的宽调谐范围内提供高衍射效率,从而确保在MIR范围内具有高功率密度和高光谱分辨率。 MOEMS扫描仪的共振频率为1 kHz,因此允许在1 ms内进行两次全波长扫描,一次向上,另一次向下。通过在聚苯乙烯参考吸收片以及一氧化碳气态样品上进行的透射测量,证明了基于MOEMS EC-QCL的实时光谱感测能力。对于后者,可以实时监测包含2070 cm〜(-1)到2280 cm〜(-1)范围内的多个吸收线的特征CO吸收带的大部分。

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