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Coherent imaging at 2.4 THz with a CW quantum cascade laser transmitter

机译:连续波量子级联激光发射器在2.4 THz处进行相干成像

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A coherent transceiver using a THz quantum cascade laser as the transmitter and an optically pumped molecular laser as the local oscillator has been used, with a pair of Schottky diode mixers in the receiver and reference channels, to acquire high-resolution images of fully illuminated targets, including scale models. Phase stability of the received signal, sufficient to allow coherent image processing of the rotating target (in azimuth and elevation), was obtained by frequency-locking the TQCL to the free-running, highly stable optically pumped molecular laser. While the range to the target was limited by the available TQCL power (several hundred microwatts) and reasonably strong indoor atmospheric attenuation at 2.408 THz (2.0 dB/m at 40% RH), the coherence length of the QCL transmitter will allow coherent imaging over distances up to several hundred meters. In contrast to non-coherent heterodyne detection, coherent imaging allows signal integration over time intervals considerably longer than the reciprocal of the source, or signal bandwidth, with consequent improvement in the signal-to-noise ratio. Image data obtained with the system will be presented.
机译:使用了THz量子级联激光器作为发射器和光泵浦分子激光器作为本地振荡器的相干收发器,在接收器和参考通道中使用一对肖特基二极管混频器,以获取全照明目标的高分辨率图像,包括比例模型。通过将TQCL频率锁定到自由运行的,高度稳定的光泵浦分子激光器,可以获得足以实现旋转目标(方位角和仰角)的相干图像处理的接收信号的相位稳定性。虽然目标的范围受到可用TQCL功率(几百微瓦)和2.408 THz(在40%RH时为2.0 dB / m)的相当强的室内大气衰减的限制,但QCL发射器的相干长度将允许在距离可达几百米。与非相干外差检测相比,相干成像允许在时间间隔上进行信号积分,该时间间隔比源或信号带宽的倒数大得多,从而改善了信噪比。将显示通过系统获得的图像数据。

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