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Asymmetry of light absorption upon propagation of focused femtosecond laser pulses with spatiotemporal coupling through glass materials

机译:通过玻璃材料与时空耦合的聚焦飞秒激光脉冲传播时光吸收的不对称性

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Ultrashort laser pulses are usually described in terms of temporal and spatial dependences of their electric field, assuming that the spatial dependence is separable from time dependence. However, in most situations this assumption is incorrect as generation of ultrashort pulses and their manipulation lead to couplings between spatial and temporal coordinates resulting in various effects such as pulse front tilt and spatial chirp. One of the most intriguing spatiotemporal coupling effects is the so-called "lighthouse effect", the phase front rotation with the beam propagation distance [Akturk et al., Opt. Express 13, 8642 (2005)]. The interaction of spatiotemporally coupled laser pulses with transparent materials have interesting peculiarities, such as the effect of nonreciprocal writing, which can be used to facilitate microfabrication of photonic structures inside optical glasses. In this work, we make an attempt to numerically investigate the influence of the pulse front tilt and the lighthouse effect on the absorption of laser energy inside fused silica glass. The model, which is based on nonlinear Maxwell's equations supplemented by the hydrodynamic equations for free electron plasma, is applied. As three-dimensional solution of such a problem would require huge computational resources, a simplified two-dimensional model has been proposed. It has enabled to gain a qualitative insight into the features of propagation of ultrashort laser pulses with the tilted front in the regimes of volumetric laser modification of transparent materials, including directional asymmetry upon direct laser writing in glass materials.
机译:假设空间依赖性与时间依赖性可分离,通常根据其电场的时间和空间依赖性来描述超短的激光脉冲。然而,在大多数情况下,这种假设的产生是不正确的,因为超短脉冲和它们的操纵导致空间和时间坐标之间的联接导致诸如脉冲前倾斜和空间啁啾的各种效果。最有趣的时空耦合效果之一是所谓的“灯塔效应”,相位前旋转与光束传播距离[Akturk等,选择。快递13,8642(2005)]。时空耦合激光脉冲与透明材料的相互作用具有有趣的特性,例如非探测写入的效果,其可用于促进光学玻璃内的光子结构的微生物。在这项工作中,我们试图在数值上调查脉冲前倾倾斜和灯塔影响对熔融二氧化硅玻璃中的激光能量的影响的影响。施加基于由自由电子等离子体的流体动力方程补充的非线性麦克斯韦方程的模型。作为这样的问题的三维解决方案需要巨大的计算资源,已经提出了一种简化的二维模型。它已经启用了对透明材料的体积激光改性的体积倾斜的倾斜前沿进行定性见解,以透明材料的体积激光改性的制度,包括在玻璃材料中直接激光写入的方向不对称。

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