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Alternate formulation of enhanced backscattering as phase conjugation and diffraction: derivation and experimental observation

机译:作为相位共轭和衍射的增强反向散射的替代公式:推导和实验观察

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摘要

Enhanced backscattering (EBS), also known as weak localization of light, is derived using the Huygens–Fresnel principle and backscattering is generally shown to be the sum of an incoherent baseline and a phase conjugated portion of the incident wave that forms EBS. The phase conjugated portion is truncated by an effective aperture described by the probability function P(s) of coherent path-pair separations. P(s) is determined by the scattering properties of the medium and so characterization of EBS can be used for metrology of scattering materials. A three dimensional intensity peak is predicted in free space at a point conjugate to the source and is experimentally observed.
机译:增强的反向散射(EBS),也称为光的弱局部性,是使用惠更斯-菲涅耳原理导出的,并且反向散射通常显示为非相干基线和形成EBS的入射波的相位共轭部分之和。相位共轭部分被有效光圈截断,该有效光圈由相干路径对间隔的概率函数P(s)描述。 P(s)由介质的散射特性确定,因此EBS的表征可用于散射材料的计量。在自由空间中与源共轭的点预测了三维强度峰,并通过实验观察到。

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