Imaging through Scattering Media Using Pulsed Homodyne Detection

Matthew E. Anderson, M. Beck, M. Raymer
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Abstract

In this paper we demonstrate high resolution imaging of a target embedded in a scattering medium using a pulsed laser source. The imaging is performed by interfering the light emerging from the scattering medium with a 200 fs duration pulsed local oscillator beam, and detecting the interfered light with a balanced homodyne detector. We show that the data collected by our detector can be analyzed in two ways. One method strongly suppresses the detection of scattered light emerging from the medium, leaving almost exclusively the ballistic (unscattered) component of the signal. Using the other data analysis technique, both the scattered and ballistic components of the signal are readily detected. This shows that despite the fact that coherent (homodyne) detection is used, the system can be optimized for the detection of either coherent (unscattered) or incoherent (scattered) light.
利用脉冲纯差检测通过散射介质成像
在本文中,我们演示了高分辨率成像的目标嵌入在散射介质中使用脉冲激光源。成像是通过用持续时间为200fs的脉冲本振光束干扰来自散射介质的光,并用平衡同差检测器检测干扰光来完成的。我们展示了探测器收集的数据可以用两种方式进行分析。一种方法强烈地抑制了对从介质中出现的散射光的检测,几乎只留下信号的弹道(未散射)成分。使用其他数据分析技术,可以很容易地检测到信号的散射和弹道分量。这表明,尽管使用了相干(零差)检测,但该系统可以优化为检测相干(非散射)或非相干(散射)光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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