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Multipulse Mode of Heating Nanoparticles by Nanosecond, Picosecond and Femtosecond Pulses

机译:纳秒,PICOSECOND和Femtosecond脉冲通过纳米加热纳米粒子的多漏剂模式

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Nanoparticles are being researched as a noninvasive method for selectively killing cancer cells. With particular antibody coatings on nanoparticles, they attach to the abnormal cells of interest (cancer or otherwise). Once attached, nanoparticles can be heated with UV/visible/IR or RF pulses, heating the surrounding area of the cell to the point of death. Researchers often use single-pulse or multipulse lasers when conducting nanoparticle ablation research. In the present paper, we are conducting an analysis to determine if the multipulse mode has any advantage in heating of spherical metal nanoparticles (such as accumulative heating effect). The laser heating of nanoparticles is very sensitive to the time structure of the incident pulsed laser radiation, the time interval between the pulses, and the number of pulses used in the experiments. We perform time-dependent simulations and detailed analyses of the different nonstationary pulsed laser-nanoparticle interaction modes, and show the advantages and disadvantages of multipulse (set of short pulses) and single-pulse laser heating of nanoparticles. A comparative analysis for both radiation modes (single-pulse and multipulse) are discussed for laser heating of metal nanotargets on nanosecond, picosecond and femtosecond time scales to make recommendations for efficient laser heating of nanomaterials in the experiments.
机译:纳米颗粒正在被研究作为选择性杀死癌细胞的非侵袭方法。在纳米颗粒上具有特定抗体涂层,它们附着于感兴趣的异常细胞(癌症或其他方式)。一旦附着,纳米颗粒可以用UV /可见/ IR或RF脉冲加热,将细胞的周围区域加热到死亡点。在进行纳米粒子消融研究时,研究人员经常使用单脉冲或多脉冲激光器。在本文中,我们正在进行分析以确定多漏液模式是否具有在加热球形金属纳米颗粒(例如累积加热效果)中的任何优点。纳米颗粒的激光加热对入射脉冲激光辐射的时间结构非常敏感,脉冲之间的时间间隔和实验中使用的脉冲的数量。我们对不同的非间断脉冲激光纳米粒子相互作用模式进行时间依赖性模拟和详细分析,并显示了纳米颗粒的多脉冲(短脉冲套)和单脉冲激光加热的优缺点。探讨了辐射模式(单脉冲和多级)的比较分析,用于纳秒,皮秒和飞秒时间尺度上的金属纳米定位的激光加热,以提出实验中纳米材料的高效激光加热的推荐。

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