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Spatial output field for arbitrary input light field in a thermally self-induced inhomogeneous medium

机译:热自感应非均匀介质中任意输入光场的空间输出场

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摘要

Light propagation in a thermally self-induced inhomogeneous medium is investigated to find the transient spatial output field for an arbitrary incident field. The paraxial wave equation is coupled with the thermal diffusion equation to predict the output field as the index of refraction transiently changes due to absorption of light by the medium. The coupled equations are non-dimensionalized and are explicitly expressed in full non-linear form. A coupling parameter is derived to scale the degree of non-linearity. Limits for the validity of using the coupled wave-diffusion approach are given, with respect to bulk fluid motion and the transverse wave assumption. An additional constraint is given on the paraxial wave equation that arises due to the coupling with the diffusion equation. Numerical results are compared to exact solutions and experiments for Gaussian and multi-mode laser beams, which verify that this approach is accurate in the range of validity, and describes local, transient self-focusing in multi-mode beams.
机译:研究了光在自热诱导不均匀介质中的传播,以找到任意入射场的瞬态空间输出场。近轴波方程与热扩散方程耦合在一起,以预测输出场,因为折射率由于介质对光的吸收而瞬时改变。耦合方程是无量纲的,并以完全非线性的形式明确表示。导出耦合参数以缩放非线性程度。相对于整体流体运动和横波假设,给出了使用耦合波扩散方法的有效性限制。由于与扩散方程耦合,对旁轴波方程给出了附加约束。将数值结果与高斯和多模激光束的精确解和实验进行了比较,这证明了该方法在有效范围内是准确的,并描述了多模光束的局部瞬态自聚焦。

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