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Remote sensing of explosives using mid-infrared quantum cascade lasers

机译:使用中红外量子级联激光器对爆炸物进行遥感

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摘要

The spectroscopic detection of complex molecules, such as explosives, requires a much broader spectral tuning range of the employed laser compared to the well-established tunable diode laser spectroscopy of light molecules. In this paper we demonstrate a new type of spectrally-tunable laser modules, which enables an increase of the tuning range by at least one order of magnitude in comparison to the established current-temperature tuning techniques. This was achieved by increasing the operating temperature range through the use of a temperature-variable diamond submount. The module comprises a quantum cascade (QC) laser mounted on the diamond submount with an integrated heater element and temperature sensor, enabling a controlled temperature change of the laser between 77 K and 400 K at a rate of temperature change of up to 2500 K/s. The favorable temperature characteristics allow us to easily tune the laser wavelength on- and off-resonance with the characteristic absorption bands of the material to be detected. With the QC laser module we demonstrate the detection of surface contaminations of around 10 μg/cm~2 TNT performing imaging backscattering spectroscopy.
机译:与成熟的轻分子可调二极管激光光谱相比,复杂分子(例如炸药)的光谱检测需要所用激光器的光谱调谐范围大得多。在本文中,我们演示了一种新型的光谱可调激光器模块,与已建立的电流-温度调谐技术相比,它可使调谐范围增加至少一个数量级。这是通过使用温度可变的金刚石底座来增加工作温度范围来实现的。该模块包括一个安装在金刚石底座上的量子级联(QC)激光器,该激光器具有集成的加热器元件和温度传感器,能够以高达2500 K /的温度变化率将激光器的温度变化控制在77 K和400 K之间。 s。有利的温度特性使我们能够轻松地根据待检测材料的特征吸收带来调节激光波长的共振和共振。使用QC激光模块,我们演示了使用成像背散射光谱技术检测到约10μg/ cm〜2 TNT的表面污染物。

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