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Emergent intensity from a plane-parallel medium exposed to a Gaussian laser beam: A comparison of Rayleigh and isotropic scattering

机译:暴露于高斯激光束的平面平行介质的涌现强度:瑞利和各向同性散射的比较

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摘要

The focus of this two-dimensional study is the radially varying intensity emergent from a plane-parallel scattering medium exposed to a collimated, Gaussian laser beam directed perpendicular to the upper surface. The method of analysis is the integral transform technique. Specifically, this work uses the generalized reflection and transmission functions from a previous study to construct the emergent intensity with the use of an inverse Hankel transform. Radially varying backscattered and transmitted intensities are calculated for media with isotropic and Rayleigh scattering phase functions and optical thicknesses that range from 0.125 to 8.0. The behavior of the emergent radiation inside and outside the beam is investigated for both narrow and wide beams. A new integration method is implemented to compute the emergent intensity at the beam center. The emergent intensity at the beam center is used to quantify when a one-dimensional model may be used. As expected, for small optical thicknesses and near the beam the phase function has significant influence, while far from the beam multiple scattering reduces the influence of the Rayleigh phase function. Results from this study will be useful in understanding and interpreting more complicated situations, such as those that include polarization. (C) 2005 Elsevier Ltd. All rights reserved.
机译:这项二维研究的重点是从暴露于垂直于上表面的准直高斯激光束的平面平行散射介质中出现的径向变化强度。分析方法是积分变换技术。具体来说,这项工作使用先前研究中的广义反射和透射函数,通过使用逆汉克尔变换来构建涌现强度。对于具有各向同性和瑞利散射相位函数且光学厚度范围为 0.125 至 8.0 的介质,计算了径向变化的背散射和透射强度。研究了窄波束和宽波束内外突发辐射的行为。实施了一种新的积分方法来计算光束中心的涌出强度。光束中心的涌现强度用于量化何时可以使用一维模型。正如预期的那样,对于小光学厚度和靠近光束的相位函数具有显着影响,而远离光束的多重散射降低了瑞利相位函数的影响。这项研究的结果将有助于理解和解释更复杂的情况,例如包括极化的情况。(C) 2005 爱思唯尔有限公司保留所有权利。

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