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Theoretical study of spatiotemporal focusing for in-bulk laser structuring of dielectrics

机译:体激光电介质结构的时空聚焦理论研究

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For laser processing applications and creation of microstructures inside dielectric materials, focusing of a femtosecond Gaussian pulse within the hulk of these materials is commonly used. The laser energy is mainly absorbed in the focal spot due to the nonlinear feature of laser-dielectric interaction. Recently, to get further control of laser energy absorption, the spatiotemporal focusing technique, for which the pulse duration evolves in the course of propagation, has been introduced. However, spatiotemporal focusing also leads to an inclination of the wavefront, the pulse-front tilt. In this work, the influence of the pulse-front tilt on pulse propagation and interaction is studied by solving numerically the Maxwell's equations coupled to laser induced electron dynamics in dielectrics. The qualitative behavior of energy absorption, and geometric features of the resulting absorption volume are presented. By varying the laser intensity and pulse-front tilt, both the aspect ratio and symmetry of the absorption volume are changed. A simple model predicting the evolution of this aspect ratio is provided. (C) 2021 Optical Society of America
机译:对于激光加工应用和介电材料内部微观结构的创建,通常使用在这些材料的外壳内聚焦飞秒高斯脉冲。由于激光-介电相互作用的非线性特性,激光能量主要被焦点吸收。最近,为了进一步控制激光能量吸收,引入了脉冲持续时间在传播过程中演变的时空聚焦技术。然而,时空聚焦也会导致波前的倾斜,即脉冲前倾斜。本文通过数值求解电介质中激光感应电子动力学耦合的麦克斯韦方程组,研究了脉冲前倾对脉冲传播和相互作用的影响。给出了能量吸收的定性行为,以及所得吸收体积的几何特征。通过改变激光强度和脉冲前倾角,吸收体积的纵横比和对称性都会发生变化。提供了一个简单的模型来预测该纵横比的演变。(C) 2021 年美国光学学会

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