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Incoherent beam combination of mid-wave infrared quantum cascade lasers

机译:中波红外量子级联激光器的非相干光束组合

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Quantum cascade laser (QCL) emitting in the mid-wave infrared atmospheric windows (3 to 5 μm) will beof immediate use to several civilian applications, including airborne self-defense protection system andtrace gas sensing and free space optical communications. When the output power of a single QCL is toolow, the beams of different lasers can be combined by incoherent beam combining. For incoherent beamcombining the laser beams are arranged side by side on the aperture of the laser system and combine inthe farfield. Incoherent beam combining has been applied very successfully to diode lasers with highrobustness and reliability due to it is neither limited to any number of lasers nor to any laser characteristics.This technique is demonstrated to be compatible with QCLs in this work. In this paper, the method ofincoherent beam combination of 4 independent QCL emitters with a 0.1 W continuous wave power at roomtemperature each is studied. Results show that the incoherent power superposition of mid-infrared QCLscan be achieved by beam combining with an efficiency of not less than 90%. The output farfielddivergence angle is about 5 mrad, which is consistent with the farfield divergence angle of the four subbeams.
机译:在中波红外大气窗口(3至5μm)中发射的量子级联激光器(QCL)将 立即用于多种民用应用,包括机载自卫保护系统和 跟踪气体传感和自由空间光通信。当单个QCL的输出功率太高时 低,可以通过非相干光束合并来合并不同激光器的光束。对于非相干光束 合并的激光束并排布置在激光系统的孔径上,并合并在 远场。非相干光束组合已非常成功地应用于高功率二极管激光器 由于它的坚固性和可靠性,不限于任何数量的激光器,也不限于任何激光器特性。 在这项工作中,该技术被证明与QCL兼容。本文的方法 4个独立QCL发射器的非相干光束组合,在室温下具有0.1 W连续波功率 研究每个温度。结果表明,中红外QCL的非相干功率叠加 通过光束组合可以达到不小于90%的效率。输出farfield 发散角约为5 mrad,与四个子光束的远场发散角一致。

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