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Spectroscopic Study of Terahertz Generation in Mid-Infrared Quantum Cascade Lasers

机译:中红外量子级联激光器中太赫兹产生的光谱学研究

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摘要

Terahertz quantum cascade laser sources based on intra-cavity difference-frequency generation are currently the only room-temperature mass-producible diode-laser-like emitters of coherent 1–6 THz radiation. Device performance has improved dramatically over the past few years to reach milliwatt-level power output and broad tuning from 1.2 to 5.9 THz, all at room-temperature. Terahertz output in these sources originates from intersubband optical nonlinearity in the laser active region. Here we report the first comprehensive spectroscopic study of the optical nonlinearity and investigate its dependence on the mid-infrared pump frequencies. Our work shows that the terahertz generation efficiency can vary by a factor of 2 or greater depending on the spectral position of the mid-infrared pumps for a fixed THz difference-frequency. We have also measured for the first time the linewidth for transitions between the lower quantum cascade laser states, which is critical for determining terahertz nonlinearity and predicting optical loss in quantum cascade laser waveguides.
机译:基于腔内差异频率生成的太赫兹量子级联激光源是目前唯一可在室温下大规模生产的,相干1-6 THz辐射的类似二极管激光的发射器。在过去的几年中,设备性能得到了显着提高,达到了毫瓦级的功率输出,并在室温下从1.2THz扩展到5.9 THz。这些源中的太赫兹输出源​​自激光有源区域中的子带间光学非线性。在这里,我们报告了光学非线性的第一个综合光谱研究,并研究了其对中红外泵浦频率的依赖性。我们的工作表明,对于固定的THz差频,太赫兹的产生效率可以变化2倍或更大,具体取决于中红外泵浦的光谱位置。我们还首次测量了较低量子级联激光状态之间跃迁的线宽,这对于确定太赫兹非线性和预测量子级联激光波导中的光损耗至关重要。

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