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Ballistic heat transport in laser generated nano-bubbles

机译:弹道热传输激光生成nano-bubbles

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Nanobubbles generated by laser heated plasmonic nanoparticles are of interest for biomedical and energy harvesting applications. Of utmost importance is the maximal size of these transient bubbles. Here, we report hydrodynamic phase field simulations of the dynamics of laser induced nanobubbles, with the aim to understand which physical processes govern their maximal size. We show that the nanobubble maximal size and lifetime are to a large extent controlled by the ballistic thermal flux which is present inside the bubble. Taking into account this thermal flux, we can reproduce the fluence dependence of the maximal nanobubble radius as reported experimentally. We also discuss the influence of the laser pulse duration on the number of nanobubbles generated and their maximal size. These studies represent a significant step toward the optimization of the nanobubble size, which is of crucial importance for photothermal cancer therapy applications.
机译:Nanobubbles所产生的激光加热电浆为生物医学和纳米颗粒感兴趣的能源获取的应用程序。重要的是这些瞬态的最大大小泡沫。模拟的动态激光诱导nanobubbles,目标是理解物理过程管理他们的最大大小。表明nanobubble最大大小和一生都在很大程度上控制的弹道热通量存在里面的泡沫。通,我们可以复制的影响依赖最大nanobubble半径报道实验。激光脉冲持续时间的数量nanobubbles生成和他们的最大大小。这些研究是一个重要的一步nanobubble大小的优化,这是至关重要的癌症光热光谱分析治疗应用。

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