Altmann K
Appl Opt. 1988 Jun 15;27(12):2451-60. doi: 10.1364/AO.27.002451.
Based on transport theory, a scattering theory is presented which describes the spatiotemporal distortion of time-dependent laser irradiation in a homogeneous particulate medium as a series expansion in scattering orders in an analytically exact manner. Although applicable to the general case of an arbitrary scattering phase function, the theory is elaborated here for Gaussian forward scattering, where it is the generalization of the theory derived by Tam and Zardecki [Opt. Acta 26, 659 (1979)] for cw irradiation. The individual terms of the series are derived from a generalized sequence of functions which are independent of the specific parameters of a given case and thus, once computed, can be used for an arbitrary case of forward scattering.
基于输运理论,提出了一种散射理论,该理论以解析精确的方式将均匀颗粒介质中与时间相关的激光辐照的时空畸变描述为散射阶数的级数展开。尽管该理论适用于任意散射相位函数的一般情况,但在此针对高斯前向散射进行阐述,在此情况下它是Tam和Zardecki [《光学学报》26, 659 (1979)] 推导的连续波辐照理论的推广。该级数的各项源自一组广义函数序列,这些函数与给定情况的特定参数无关,因此一旦计算出来,就可用于任意前向散射情况。