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Two-window heterodyne methods for measurement of optical coherence in multiple scattering media

机译:测量多散射介质中光学相干性的两窗外​​差法

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Summary form only given. The study of optical coherence in multiple scattering media is currently receiving renewed attention because it impacts the development of optical diagnostics based on light propagation in biological tissue. New methods have been developed for characterizing the propagation of optical coherence in multiple scattering media based on the measurement of mutual coherence and Wigner functions. The Wigner function is Fourier transform related to the mutual coherence function of the field. Maximum information is obtained by polarization sensitive measurement of the transverse optical coherence to determine the field correlation functions C/sub ij/ (x, x') = (e*/sub i/(x)/spl epsiv//sub j/(x')), where i, j are the polarizations of the fields measured at transverse positions x and x'. We have developed a novel two-window heterodyne method for determining the field correlation functions by measuring the generalized Wigner functions for the optical field. In the experiments, a signal field is transmitted through or reflected from a multiple scattering medium consisting of a water-glycerol suspension of polystyrene spheres.
机译:仅提供摘要表格。由于它影响基于生物组织中光传播的光学诊断技术的发展,因此在多种散射介质中进行光学相干性研究受到了新的关注。基于互相干和维格纳函数的测量,已开发出表征光学相干在多种散射介质中传播的新方法。 Wigner函数是与场的互相关函数有关的傅立叶变换。通过对横向光学相干性进行偏振敏感测量以确定场相关函数C / sub ij /(x,x')=(e * / sub i /(x)/ spl epsiv // sub j /( x')),其中i,j是在横向位置x和x'处测得的场的极化。我们已经开发了一种新颖的两窗口外差方法,通过测量光学场的广义Wigner函数来确定场相关函数。在实验中,信号场通过由聚苯乙烯球的水-甘油悬浮液组成的多种散射介质传输或反射。

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