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Dynamics of a vertical cavity quantum cascade phonon laser structure

机译:垂直腔量子级联声子激光结构的动力学

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摘要

Driven primarily by scientific curiosity, but also by the potential applications of intense sources of coherent sound, researchers have targeted the phonon laser (saser) since the invention of the optical laser over 50 years ago. Here we fabricate a vertical cavity structure designed to operate as a saser oscillator device at a frequency of 325 GHz. It is based on a semiconductor superlattice gain medium, inside a multimode cavity between two acoustic Bragg reflectors. We measure the acoustic output of the device as a function of time after applying electrical pumping. The emission builds in intensity reaching a steady state on a timescale of order 0.1 μs. We show that the results are consistent with a model of the dynamics of a saser cavity exactly analogous to the models used for describing laser dynamics. We also obtain estimates for the gain coefficient, steady-state acoustic power output and efficiency of the device.
机译:自从50多年前发明光学激光以来,研究人员就一直以声子激光器(激射激光器)为目标,这主要是由于科学的好奇心以及相干声源的潜在应用。在这里,我们制造了一个垂直腔结构,该结构设计为在325 GHz的频率下作为saser振荡器设备工作。它基于半导体超晶格增益介质,位于两个声学布拉格反射器之间的多模腔内。在施加电泵之后,我们将设备的声音输出作为时间的函数进行测量。发射建立强度达到稳定状态,其时间尺度为0.1µμs。我们表明,结果与激光腔的动力学模型完全一致,该模型与用于描述激光动力学的模型完全相似。我们还获得了增益系数,稳态声功率输出和设备效率的估算值。

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