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Wave engineering with THz quantum cascade lasers

机译:太赫兹量子级联激光器的波工程

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Quantum cascade lasers are compact devices based on mature compound semiconductors such as GaAs that take advantage of highly developed optoelectronic fabrication techniques to integrate linear and nonlinear functions. This Review discusses terahertz-wave engineering using quantum cascade lasers with a particular focus on techniques that have been implemented to control their spectral and output beam properties. After briefly introducing the types of active regions and surveying present maximum operating temperatures, we review several photonic structures used for frequency and beam engineering, ranging from distributed feedback lasers to photonic crystals. We then describe techniques that allow the upconversion of terahertz quantum cascade laser radiation in the near-infrared region using nonlinear intracavity mixing. Finally, we review frequency stabilization of terahertz quantum cascade lasers with a special emphasis on phase locking to near-infrared frequency combs.
机译:量子级联激光器是基于成熟化合物半导体(例如GaAs)的紧凑型设备,该器件利用了高度发展的光电制造技术来集成线性和非线性功能。这篇评论讨论了使用量子级联激光器的太赫兹波工程,特别侧重于已实现的控制其光谱和输出光束特性的技术。在简要介绍了有源区域的类型并调查了当前的最高工作温度之后,我们回顾了用于频率和光束工程的几种光子结构,范围从分布式反馈激光器到光子晶体。然后,我们描述了允许使用非线性腔内混合在近红外区域对太赫兹量子级联激光辐射进行上转换的技术。最后,我们回顾了太赫兹量子级联激光器的频率稳定性,特别强调了对近红外频率梳的锁相。

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