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External amplitude and frequency modulation of a terahertz quantum cascade laser using metamaterial/graphene devices

机译:使用超材料/石墨烯器件的太赫兹量子级联激光器的外部振幅和频率调制

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摘要

Active control of the amplitude and frequency of terahertz sources is an essential prerequisite for exploiting a myriad of terahertz applications in imaging, spectroscopy, and communications. Here we present a optoelectronic, external modulation technique applied to a terahertz quantum cascade laser which holds the promise of addressing a number of important challenges in this research area. A hybrid metamaterial/graphene device is implemented into an external cavity set-up allowing for optoelectronic tuning of feedback into a quantum cascade laser. We demonstrate powerful, all-electronic, control over the amplitude and frequency of the laser output. Full laser switching is performed by electrostatic gating of the metamaterial/graphene device, demonstrating a modulation depth of 100%. External control of the emission spectrum is also achieved, highlighting the flexibility of this feedback method. By taking advantage of the frequency dispersive reflectivity of the metamaterial array, different modes of the QCL output are selectively suppressed using lithographic tuning and single mode operation of the multi-mode laser is enforced. Side mode suppression is electrically modulated from ~6 dB to ~21 dB, demonstrating active, optoelectronic modulation of the laser frequency content between multi-mode and single mode operation.
机译:主动控制太赫兹源的振幅和频率是开发成像,光谱学和通信中各种太赫兹应用的必要前提。在这里,我们介绍一种应用于太赫兹量子级联激光器的光电外部调制技术,该技术有望解决这一研究领域中的许多重要挑战。混合超材料/石墨烯器件被实现到外部腔体设置中,从而允许对进入量子级联激光器的反馈进行光电调谐。我们展示了对激光输出的振幅和频率进行强大的全电子控制。通过超材料/石墨烯器件的静电门控来执行完全激光切换,这表明调制深度为100%。还实现了对发射光谱的外部控制,突出了这种反馈方法的灵活性。通过利用超材料阵列的频率色散反射率,可以使用光刻调谐来选择性抑制QCL输出的不同模式,并强制执行多模式激光器的单模式操作。侧模抑制从〜6 dB到〜21 dB进行电调制,这表明在多模和单模操作之间对激光频率成分进行了主动的光电调制。

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