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Ultrafast imaging of transient electronic plasmas produced in conditions of femtosecond waveguide writing in dielectrics

机译:飞秒波导写入电介质条件下产生的瞬态电子等离子体的超快成像

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Femtosecond laser-induced plasmas in bulk dielectrics are imaged under waveguide writing conditions, for different polarizations, pulse durations, and processing depths, and their temporal evolution is measured using ultrafast pump-probe microscopy. The irradiation beam profile is elliptically shaped yielding a disklike focal volume. We demonstrate for doped phosphate glass that increasing the pulse duration improves the spatial distribution of deposited energy by minimizing beam filamentation and prefocal depletion effects. As a consequence, energy deposition in the desired volume is greatly enhanced. Our results identify key parameters for optimizing femtosecond laser processing of dielectrics and different strategies to minimize energy loss channels.
机译:在波导写入条件下,针对不同的极化,脉冲持续时间和处理深度,对体电介质中的飞秒激光诱导的等离子体进行成像,并使用超快速泵浦探针显微镜测量其随时间的变化。辐照光束轮廓呈椭圆形,产生圆盘状的聚焦体积。我们证明了对于掺杂的磷酸盐玻璃,增加脉冲持续时间可以通过最小化束丝和前焦耗尽效应来改善沉积能量的空间分布。结果,大大增加了所需体积的能量沉积。我们的结果确定了用于优化飞秒激光对电介质的加工的关键参数,以及用于最小化能量损耗通道的不同策略。

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