非线性光学拉曼相互作用散射材料的时间门控成像

J. Reintjes, M. Duncan, M. Bashkansky, J. A. Moon, R. Mahon, L. Tankersley, J. Prewitt
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引用次数: 0

摘要

我们已经开发了几种时间门控成像技术,可以通过密集散射材料观察物体。这些技术基于非线性光学拉曼相互作用,包括使用受激拉曼放大的脉冲门控和使用相干反斯托克斯拉曼散射和受激拉曼散射的相关门控。在弹道成像系统中,散射衰减高达e - 33,获得了分辨率优于125 μm的图像。我们已经进行了理论研究,以确定在漫射和准漫射散射制度的图像分辨率。在完全漫射状态下,空间分辨率约为散射体长度的五分之一。我们已经用实验验证了这个结果。我们还使用上述技术对嵌入在散射和非散射材料中的物体进行距离门控成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time Gated Imaging Through Scattering Materials with Nonlinear Optical Raman Interactions
We have developed several time-gated imaging techniques that allow the viewing of objects through dense scattering material. These techniques are based on nonlinear optical Raman interactions and include pulse gating using stimulated Raman amplification and correlation gating using both coherent anti-Stokes Raman scattering and stimulated Raman scattering. In the ballistic imaging regime, images with resolution better than 125 μm have been obtained after scattering attenuations of up to e−33. We have performed theoretical studies to determine image resolution in the diffuse and quasi-diffuse scattering regimes. In the fully diffuse regime the spatial resolution is found to be approximately one-fifth of the length of the scatterer. We have verified this result experimentally. We have also used the above techniques to perform range-gated imaging of objects embedded in scattering and non-scattering material.
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