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Investigation on the origin of terahertz waves generated by dc-biased multimode semiconductor lasers at room temperature

机译:直流偏置多模半导体激光器在室温下产生的太赫兹波的起源研究

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摘要

A technique to measure a terahertz wave generated by spectrum tailored Fabry–Pérot lasers (FP) is assessed. A dc-biased and 25 °C temperature controlled FP is probed by a continuous wave signal, tuned at 20 nm away from its lasing modes. With a 0.02 nm resolution optical spectrum analyzer (OSA), the terahertz generated signal frequency is measured from the interval between the probe and its side-band modulations. The terahertz waves emitted by these FPs are measured at 370±5 GHz and at 1.157±0.005 THz, respectively, within a precision set by our OSA. The origin of the terahertz wave is due to passive mode-locked through intracavity four-wave-mixing processes.
机译:评估了一种技术,该技术用于测量由光谱定制的Fabry-Pérot激光器(FP)产生的太赫兹波。直流偏置和25°C温度控制的FP由连续波信号探测,该信号在距其激光模式20 nm处调谐。使用0.02 nm分辨率的光谱分析仪(OSA),可从探头及其边带调制之间的间隔测量太赫兹产生的信号频率。这些FP发射的太赫兹波分别在370±5 GHz和1.157±0.005 THz的频率下测量,且精度由我们的OSA设定。太赫兹波的起源是由于通过腔内四波混合过程的无源锁模。

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