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Enhancing the Range and Information Grasp by Improving Coherenceof the Lidar Reference Oscillator

机译:通过改善激光雷达参考振荡器的连贯性提高范围和信息掌握

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One issue which can offer a significant gain in the information content of echo-returns from remote objects is improving the phase stability of the Optical Frequency Reference Oscillator used for the coherence base for the system. If we neglect echo phase noise added due to atmospheric effects (turbulence, scattering ...), one can make some estimates to usefully guide our thinking about the feasible range and phase noise of a Coherent Lidar system, for example as could be used in space. Long delay times are particularly challenging as the return power is reduced by diffractive losses and the large time-differential samples the optical source phase noise after a larger number of cycles have been emitted - both effects deteriorate the readout quality. For example, free-running lasers rarely are phase-coherent for 1 ms, corresponding to 150 km range. The practical case is normally made drastically worse by vibrations inadvertently applied to the source and antenna. With the methods described, we have shown optical phase stability for times >1s.
机译:可以在远程对象的回声返回信息内容中提供显着增益的一个问题是提高用于系统的相干基座的光学频率参考振荡器的相位稳定性。如果我们忽略由于大气效应(湍流,散射...)添加的回波相噪声,则可以对有些估计进行一些估计,以便我们对连贯的LIDAR系统的可行范围和相位噪声进行思考,例如可以使用空间。由于通过衍射损耗降低返回功率并且已经发出了较大数量的循环后,返回功率降低了长延迟时间特别具有挑战性 - 两者效应都会降低读出质量。例如,自由运行的激光器很少是相干的1毫秒,对应150公里范围。实际情况通常通过无意中施加到源和天线的振动来急剧变差。利用所描述的方法,我们已经示出了次数> 1s的光学相位稳定性。

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