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CHIRPED FEMTOSECOND PULSE SCATTERING BY SPHERICAL PARTICLES

机译:球形颗粒的FE子飞秒脉冲散射

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Generalized Lorentz-Mie formulas are used to study the scattering characteristics when a chirped femtosecond pulse illuminates a spherical particle. For a linear chirped Gaussian pulse with the envelope function g(tau) = exp[-pi(1 + ib)tau(2)], dimensionless parameter b is defined as a chirp. The calculation illustrated that even for pulses with a constant carrier wavelength (lambda(0) = 0.5 mu m) and pulse-filling coefficient (l(0) = 1.98), the efficiencies for extinction and scattering differ very much between the carrier wave and the different chirped pulses. The slowly varying background of the extinction and the scattering curves is damped by the chirp. When the pulse is deeply chirped, the maxima and minima of the background curves reduce to the point where they disappear, and the efficiency curves illustrate a steplike dependence on the sphere size. Another feature is that the chirped-pulse scattering seems blind: it depends only on the amount of chirp (), regardless of upchirp (b > 0) or downchirp (b < 0). (C) 1996 Optical Society of America [References: 12]
机译:通用的Lorentz-Mie公式用于研究when飞秒脉冲照射球形粒子时的散射特性。对于具有包络函数g(tau)= exp [-pi(1 + ib)tau(2)]的线性chi高斯脉冲,将无量纲参数b定义为a。计算结果表明,即使对于具有恒定载波波长(λ(0)= 0.5μm)和脉冲填充系数(l(0)= 1.98)的脉冲,载波和光波之间的消光和散射效率也有很大差异。不同的chi声脉冲。 the的消散和散射曲线的缓慢变化的背景受到damp的抑制。当脉冲深chi时,背景曲线的最大值和最小值减小到消失的程度,效率曲线说明了对球体大小的逐步依赖。另一个特征是线性调频脉冲的散射似乎是盲目的:它仅取决于线性调频的量( b ),而不管向上调频(b> 0)还是向下调频(b <0)。 (C)1996年美国眼镜学会[参考文献:12]

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