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Study of femtosecond laser interaction with gold nanoparticles embedded in dielectrics

机译:电介质嵌入金纳米粒子的飞秒激光相互作用研究

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The interaction of intense femtosecond laser pulse with model samples containing gold nanoparticales embedded in dielectrics is studied in order to understand the role played by nanodefects in optical breakdown of dielectrics. A theoretical study of the conduction electrons dynamics in the laser field predicts an efficient injection of carriers from the metallic inclusion to the conuction band of the dielectric, which leads to a strong local increase of the optical absorption in the initially transparent matrix. This prediction is tested experimentally by using time -resolved spectral interferometry to measure excitation densities as a function of the laser intensity in silica and samples doped with gold nanoparticles, which are compared with similar measurements in pure silica.
机译:研究了嵌入在电介质中的含金纳米纳米纳米纳米纳米纳米龙的模型样品的强烈飞秒激光脉冲的相互作用,以了解纳米截面在电介质的光学击穿中的作用。激光场中的传导电子动力学的理论研究预测了从金属夹杂物到电介质的构造带的有效喷射,这导致最初透明基质中的光学吸收的强大局部增加。通过使用时间 - 溶解的光谱干涉测定法实验测试该预测,以测量激发密度作为二氧化硅中的激光强度的函数,并用金纳米颗粒掺杂的样品与纯二氧化硅中类似的测量相比。

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