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Coherent backscattering cone shape depends on the beam size

机译:相干后向散射锥形状取决于光束大小

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摘要

Coherent backscattering (CBS) is a beautiful physical phenomenon that takes place in a highly scattering medium, which has potential application in noninvasive optical property measurement. The current model that explains the CBS cone shape, however, assumes the incoming beam diameter is infinitely large compared to the transport length. In this paper, we evaluate the effect of a finite scalar light illumination area on the CBS cone, both theoretically and experimentally. The quantitative relationship between laser beam size and the CBS cone shape is established by using two different finite beam models (uniform top hat and Gaussian distribution). A series of experimental data with varying beam diameters is obtained for comparison with the theory. Our study shows the CBS cone shape begins to show distortion when beam size becomes submillimeter, and this effect should not be ignored in general. In biological tissue where a normal large beam CBS cone is too narrow for detection, this small beam CBS may be more advantageous for more accurate and higher resolution tissue characterization.
机译:相干背向散射(CBS)是一种发生在高散射介质中的美丽物理现象,在无创光学性质测量中具有潜在的应用前景。但是,当前解释CBS圆锥形状的模型假定入射光束直径与传输长度相比是无限大的。在本文中,我们在理论和实验上评估了有限标量光照区域对CBS锥的影响。通过使用两个不同的有限光束模型(均匀顶帽和高斯分布),建立了激光束尺寸与CBS圆锥形状之间的定量关系。获得了一系列具有不同光束直径的实验数据,以便与该理论进行比较。我们的研究表明,当光束尺寸变为亚毫米级时,CBS圆锥形状开始出现变形,这种效果通常不容忽视。在正常的大束CBS圆锥体太窄而无法检测的生物组织中,此小束CBS对于更准确和更高分辨率的组织表征可能更为有利。

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