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Sub-millimeter resolution laser ranging at 9.3 kilometers using temporally stretched, frequency chirped pulses from a mode-locked laser

机译:使用锁模激光器的时间拉伸,频率chi脉冲在9.3公里范围内的亚毫米分辨率激光器

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摘要

A chirped fiber Bragg grating with a dispersion of 1651psm is used to generate temporally stretched, frequency chirped pulses from a passively mode locked fiber laser that generates pulses of ~1ps (FWHM) duration at a repetition rate of 20MHz with 3.5mW average power (peak power of 175W). The use of a chirped fiber Bragg grating enables the generation of temporally stretched pulses with low peak power so that non-linear effects in the fiber can be avoided. A fiber based interferometeric arrangement is used for interfering a reference signal with the reflected signal from the target to realize a coherent heterodyne detection scheme. In the RF domain, the detected heterodyne beat frequency shifts as the target distance is changed. A round trip target distance of 14km in air is simulated using 9.3km of optical fiber and a resolution of less than a millimeter is observed.
机译:a光纤布拉格光栅的色散为1651ps / nm,用于从被动锁模光纤激光器产生时间拉伸的频率chi脉冲,该激光器以〜20ps的重复频率产生〜1ps(FWHM)的持续时间,平均功率为3.5mW (峰值功率175W)。 fiber光纤布拉格光栅的使用使得能够产生具有低峰值功率的时间拉伸脉冲,从而可以避免光纤中的非线性效应。基于光纤的干涉仪布置用于将参考信号与来自目标的反射信号相干扰,以实现相干外差检测方案。在RF域中,检测到的外差拍频随着目标距离的变化而移动。使用9.3km的光纤模拟了空气中14km的往返目标距离,并且观察到的分辨率小于1毫米。

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