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Calculation of nonlinear optical damage from space-time-tailored pulses in dielectrics

机译:电介质中时空脉冲的非线性光学损伤的计算

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Control of the time duration of a laser pulse as it focuses spatially in a material provides a means for delaying the onset of nonlinear effects during propagation. We investigate simultaneous space-time focusing (SSTF) of femtosecond radially-chirped annular pulses in Kerr dielectrics. The energy and temporal chirp of pulses incident upon a grating-grating-lens system are varied in simulations that solve the unidirectional pulse propagation equation. This system is modeled by inserting transformations that act on the electric field obtained from propagation from one component to the next. The propagation is coupled to the time evolution of the free charge density as a function of space. The resulting "ionization tracks" are taken as a metric for predicting material modification and/or damage in bulk fused silica. As expected from linear-optical considerations, the temporal pre-chirp determines the overall pulse duration as the focusing annulus closes. We find in addition that, for a given pulse energy, the temporal pre-chirp also determines the on-axis intensity distribution as energy collapses onto the propagation axis. This effect determines how the local ionization-induced decrease in refractive index shifts energy in time relative to energy arriving on-axis from the spatially collapsing beam. The magnitude of the pre-chirp can thus control the spatial structure of ionization that may lead to material modification and/or damage.
机译:控制激光脉冲的时间持续时间,因为它在空间上聚焦材料提供了一种用于在传播期间延迟非线性效应开始的装置。我们在克尔电介质中调查飞秒径向啁啾环形脉冲的同时空间聚焦(SSTF)。入射在光栅镜头系统上的脉冲的能量和时间啁啾在求解单向脉冲传播方程的模拟中变化。该系统通过插入从从一个组件到下一个组件的传播而获得的电场上采用的变换来建模。传播耦合到自由电荷密度作为空间的函数的时间演变。得到的“电离轨道”作为指标预测材料改性和/或散装熔融二氧化硅中的损伤。正如线性光学考虑因素所预期的那样,时间前啁啾确定整体脉冲持续时间,因为聚焦环关闭。我们发现,对于给定的脉冲能量,时间前啁啾还确定作为能量折叠到传播轴上的轴上强度分布。该效果决定了局部电离诱导的折射率的降低如何相对于从空间倒塌的光束到达轴上的能量的能量。因此,预啁啾的幅度可以控制电离的空间结构,其可能导致材料改性和/或损坏。

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