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Multiple scattering effects on coherent bandwidth and pulse distortion of a wave propagating in a random distribution of particles

机译:多重散射对以随机分布的粒子传播的波的相干带宽和脉冲失真的影响

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摘要

In this paper, integral and differential equations are derived for the two-frequency mutual coherence function in a random distribution of stationary and moving particles. The differential equation is then solved for a plane wave case, and the coherent bandwidth is obtained for both the weak and strong fluctuation cases. Using the two-frequency correlation function, the output pulse shape is calculated for different particle densities. When the optical distance is small compared with unity, the pulse shape is substantially unchanged, but a long tail develops. When the optical distance is large, the coherent bandwidth is reduced and considerable pulse spread and delay occur. Numerical calculations are given for a nanosecond optical pulse propagating through cloud. It is shown that in dense cloud (density 0.5 × 10 m), the pulse delay and spread are 3 and 1.28 μsec respectively over a distance of 5 km. This agrees with available experimental data.
机译:在本文中,针对静止和运动粒子的随机分布中的两频互相干函数,推导了积分方程和微分方程。然后针对平面波情况求解微分方程,并针对弱波动情况和强波动情况获得相干带宽。使用双频相关函数,可针对不同的粒子密度计算输出脉冲形状。当光学距离与单位距离相比较小时,脉冲形状基本不变,但会形成长尾巴。当光学距离较大时,相干带宽会减小,并且会发生相当大的脉冲扩展和延迟。给出了通过云传播的纳秒级光脉冲的数值计算。结果表明,在密云(密度为0.5×10 m)中,在5 km的距离上,脉冲延迟和扩展分别为3和1.28μsec。这与可用的实验数据一致。

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