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Enhancing early-time diffusion through beam collimation in pulse propagation in sparse discrete random media

机译:通过稀疏离散随机媒体中的脉冲传播中的脉冲传播增强早期扩散

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Solutions of the time-dependent radiative transfer equation (RTE) are used to describe propagation of a pulsed collimated beam through a random medium consisting of discrete scatterers of sizes large compared to the wavelengths-a situation particularly relevant to free-space optical communication through atmospheric obscurants. The RTE is solved in the spherical-harmonics basis with no approximations other than a truncation N in the angular momenta; the results confirm convergence of the solution for a fixed beam width and growing N. The obtained time-resolved radiance includes both the usual "late-time diffusion" (LTD), responsible for the well known reduction of the "coherence bandwidth" and, thus, a serious limitation in the transfer rate, and the more recently identified "early-time diffusion" (ETD) component, attenuated at a rate significantly lower than for the coherent (ballistic) signal and characterized by a very short rise time, allowing a high-rate data transfer. The ratio of the ETD to the LTD signal for the considered collimated beams is much (orders of magnitude) higher than in the previously examined problem of an omnidirectional source, increasing its potential usefulness in communication and related imaging applications. (C) 2018 Optical Society of America
机译:时间依赖性辐射转移方程(RTE)的解决方案用于描述脉冲准直光束通过与波长与通过大气的自由空间光学通信特别相关的尺寸大小的离散散射体组成的随机介质。蒙昧主义者。 RTE在球面 - 谐波中求解,而角动量的截断N没有近似;结果证实了固定光束宽度和生长N的解决方案的收敛性。获得的时间分辨辐射包括通常的“后期扩散”(LTD),负责众所周知的“相干带宽”和,因此,在转移率的严重限制,以及最近识别的“早期扩散”(ETD)组分,以明显低于相干(弹道)信号的速率衰减,并以非常短的上升时间为特征,允许高速数据传输。所考虑的准直光束的ETD与LTD信号的比率远高于先前检查的全向源的问题,增加了其在通信和相关的成像应用中的潜在有用性。 (c)2018年光学学会

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