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Simulation studies of vapor bubble generation by short-pulse lasers

机译:短脉冲激光器蒸汽泡沫产生的仿真研究

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Formation of vapor bubbles is characteristic of many applications of short-pulse lasers in medicine. An understanding of the dynamics of vapor bubble generation is useful for developing and optimizing laser-based medical therapies. To this end, experiments in vapor bubble generation with laser light deposited in an aqueous dye solution near a fiber-optic tip have been performed. Numerical hydrodynamic simulations have been developed to understand and extrapolate results from these experiments. Comparison of two-dimensional simulations with the experiment shows excellent agreement in tracking the bubble evolution. Another regime of vapor bubble generation is short-pulse laser interactions with melanosomes. Strong shock generation and vapor bubble generation are common physical features of this interaction. A novel effect of discrete absorption by melanin granules within a melanosome is studied as a possible role in previously reported high Mach number shocks $LB@Lin and Kelly, SPIE 2391, 294 (1995)$RB@.
机译:蒸汽泡的形成是短脉冲激光在医学中的许多应用的特征。对蒸汽泡沫产生动态的理解可用于开发和优化基于激光的医疗疗法。为此,已经进行了沉积在纤维 - 光学尖端附近沉积在含水染料溶液中的激光的蒸汽泡沫产生的实验。已经开发了数值流体动力学模拟,以了解和推断来自这些实验的结果。二维模拟与实验的比较显示出追踪泡沫进化的良好协议。蒸汽泡生成的另一个制度是与黑色素的短脉冲激光相互作用。强烈的冲击生成和蒸气泡沫产生是这种互动的常见物理特征。在先前报道的高马赫数时,将黑素蛋白颗粒在黑色素颗粒中的离散吸收的新效果是在先前报道的高马赫数冲击$ LB @ Lin和Kelly,Spie 2391,294(1995)$ RB @。

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