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Dynamic absorption and scattering of water and hydrogel during high-repetition-rate (100 MHz) burst-mode ultrafast-pulse laser ablation

机译:高重复频率( 100 MHz)突发模式超快脉冲激光烧蚀过程中水和水凝胶的动态吸收和散射

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摘要

High-repetition-rate burst-mode ultrafast-laser ablation and disruption of biological tissues depends on interaction of each pulse with the sample, but under those particular conditions which persist from previous pulses. This work characterizes and compares the dynamics of absorption and scattering of a 133-MHz repetition-rate, burst-mode ultrafast-pulse laser, in agar hydrogel targets and distilled water. The differences in energy partition are quantified, pulse-by-pulse, using a time-resolving integrating-sphere-based device. These measurements reveal that high-repetition-rate burst-mode ultrafast-laser ablation is a highly dynamical process affected by the persistence of ionization, dissipation of plasma plume, neutral material flow, tissue tensile strength, and the hydrodynamic oscillation of cavitation bubbles.
机译:高重复频率的突发​​模式超快激光消融和生物组织破坏取决于每个脉冲与样品的相互作用,但是在那些先前脉冲持续存在的特殊条件下。这项工作表征和比较了琼脂水凝胶靶标和蒸馏水中133MHz重复频率,突发模式超快脉冲激光的吸收和散射动力学。使用基于时间分辨积分球的设备,逐脉冲地量化了能量分配的差异。这些测量结果表明,高重复频率的突发​​模式超快激光烧蚀是一个高度动态的过程,受到电离的持续性,等离子羽流的耗散,中性物质流,组织抗张强度以及空化气泡的水动力振荡的影响。

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