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Efficient Detection of 3 THz Radiation from Quantum Cascade Laser Using Silicon CMOS Detectors

机译:使用硅CMOS探测器的量子级联激光有效检测3 THz辐射

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In this paper, we report on efficient detection of the radiation emitted by a THz quantum cascade laser (QCL) using an antenna-coupled field effect transistor (TeraFET). In the limiting case when all radiated power would be collected, the investigated TeraFET can show up to 230 V/W responsivity with the noise equivalent power being as low as 85 pW/ at 3.1 THz, which is several times lower than that of the typical Golay cell. A combination of the QCL and a set of off-axis parabolic mirrors with 3-inch and 2-inch focal lengths was used to measure the signal-to-noise ratio (SNR) of the TeraFET. The practically achieved SNR was five times lower than that of the Golay cell and two orders of magnitude lower than a bolometer's. However, TeraFETs are much faster and do not need a signal modulation, thus can be used both in a continuous mode for power monitoring or for investigation of transient processes on a sub-microsecond time scale.
机译:在本文中,我们使用天线耦合的场效应晶体管(TERAFET)有效地检测THZ量子级联激光器(QCL)发出的辐射的有效检测。 在限制情况下,当收集所有辐射功率时,研究的TERAFET可以显示最多230 V / W的响应度,噪声等效功率低至85 PW / 3.1至THz,这比典型值低几倍 高萝细胞。 用3英寸和2英寸焦距的QCL和一组偏离曲晶镜的组合用于测量TERAFET的信噪比(SNR)。 实际上达到的SNR比高底电池低五倍,比钻孔计低两个数量级。 然而,TERAFET更快并且不需要信号调制,因此可以以连续模式用于电力监控或用于在子微秒时间尺度上进行瞬态过程的研究。

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