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Ray method for solving the coherence function equation in the case of inhomogeneously absorbing (amplifying) media

机译:在非均匀吸收(放大)介质的情况下用射线法求解相干函数方程

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An investigation was made of the propagation of partially coherent radiation in refractive media with strong absorption when account must be taken of the ray trajectory curvature owing to the inhomogeneity of the imaginary component of the relative permittivity of the medium. This investigation was carried out on the basis of the equation for the coherence function. It is shown that the equation can be reduced to a system of ray equations permitting construction of effective numerical algorithms for its solution. A self-similar solution was obtained for the coherence function in the case of a parabolic distribution of the relative permittivity of the medium and an initially Gaussian distribution of the average radiation intensity. In the geometrical-optics approximation, an equation was derived for the ray trajectorys of partially coherent radiation. The distinctive features of the propagation of coherent and partly coherent Gaussian beams, with the same Fresnel numbers, in an inhomogeneous medium were discovered.
机译:当必须考虑由于介质相对介电常数的虚部不均匀而必须考虑射线轨迹曲率时,对具有强吸收的折射介质中的部分相干辐射的传播进行了研究。这项研究是基于相干函数方程进行的。结果表明,该方程可以简化为射线方程系统,从而可以构造有效的数值算法求解。对于介质的相对介电常数的抛物线分布和平均辐射强度的初始高斯分布,获得了相干函数的自相似解。在几何光学近似中,导出了部分相干辐射的射线轨迹的方程。发现在非均匀介质中具有相同菲涅耳数的相干和部分相干高斯光束的传播的独特特征。

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