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Terahertz master-oscillator power-amplifier quantum Cascade laser with controllable polarization

机译:Terahertz主振荡器功率放大器量子级联激光可控极化

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摘要

We report the realization of controllable linear-to-circular polarization states in single-mode terahertz master-oscillator power-amplifier quantum cascade lasers (THz-MOPA-QCLs). The MOPA device contains a first-order distributed feedback (DFB) laser as the master-oscillator, a preamplifier, and a 2D periodical antenna array as the power extractor. The polarization state is determined by the orientation and the phase relationship between the antennas. The antenna array is carefully designed to efficiently extract the THz radiation and not to induce field oscillation in the array or influence the mode oscillation in the DFB section. Each demonstrated device exhibits single-mode emission with a side mode suppression ratio of ~26 dB and a single-lobed beam with a low divergence of ~23°×30°. Realized in different devices, the degree of linear or circular polarization reaches as high as 97.5% or 99.3%. Both the operation frequency and the polarization state of the radiation are lithographically tunable.
机译:我们在单模太赫兹主振荡器动力放大器量子级联激光器(THZ-MOPA-QCLS)中报告了可控线性到圆偏振状态的实现。 MOPA器件包含作为主振荡器,前置放大器和2D周期性天线阵列作为电力提取器的一阶分布式反馈(DFB)激光器。偏振态由天线之间的方向和相位关系确定。天线阵列经过精心设计,以有效地提取THZ辐射,而不是诱导阵列中的场振荡或影响DFB部分中的模式振荡。每个显示的装置表现出单模发射,侧面模式抑制比为〜26dB和单裂梁,具有〜23°×30°的低发散。在不同的装置中实现,线性或圆极化程度高达97.5%或99.3%。操作频率和辐射的偏振状态都是光刻可调的。

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  • 来源
    《Applied Physics Letters》 |2020年第2期|021103.1-021103.5|共5页
  • 作者单位

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

    School of Electronic and Electrical Engineering University of Leeds Leeds LS2 93T United Kingdom;

    School of Electronic and Electrical Engineering University of Leeds Leeds LS2 93T United Kingdom;

    School of Electronic and Electrical Engineering University of Leeds Leeds LS2 93T United Kingdom;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China Hangzhou Institute for Advanced Study University of Chinese Academy of Sciences Hangzhou 310024 China;

    Key Laboratory of Infrared Imaging Materials and Detectors Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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