Clarke R H
Appl Opt. 1968 May 1;7(5):861-8. doi: 10.1364/AO.7.000861.
Multiple scattering theory is applied to investigate the filter shape and bandwidth of the Christiansen filter which consists of a suspension of particles in a liquid such that the refractive index vs wavelength curves of the particles and the liquid intersect at a particular wavelength. It is shown that the filter shape is approximately gaussian, and that the fractional bandwidth depends inversely on the rate of change with wavelength of the difference in refractive index of the particles and the liquid and inversely on the square root of the product of the particle concentration, the average particle radius, and the length of the Christiansen cell. Initial agreement with reported experiments is encouraging.
应用多重散射理论来研究克里斯琴森滤波器的滤波形状和带宽,该滤波器由液体中的颗粒悬浮液组成,使得颗粒和液体的折射率与波长曲线在特定波长处相交。结果表明,滤波形状近似为高斯分布,并且分数带宽与颗粒和液体折射率差随波长的变化率成反比,与颗粒浓度、平均颗粒半径和克里斯琴森池长度乘积的平方根成反比。与已报道实验的初步吻合令人鼓舞。