首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Photothermal investigation of the laser-induced modification of a single gold nano-particle in a silica film
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Photothermal investigation of the laser-induced modification of a single gold nano-particle in a silica film

机译:激光诱导二氧化硅膜中单个金纳米粒子的改性的光热研究

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摘要

Absorbing defects are believed to induce thermal effects that lead to laser damage, but the correlation between defect absorption and damage has not been clearly demonstrated. A model system consisting of a thin-film of silica containing gold nano-particles serving as nano-scale absorbing defects is investigated. For this purpose, a photothermal microscope coupled with a pulsed Nd:YAG laser allow us to follow the evolution of gold inclusion absorption before and after laser irradiation, without repositioning the sample. The "pre-damage" threshold had been defined previously as the laser fluence causing localized modification of the defect absorption without any surface modification. Thanks to the high sensitivity of photothermal microscopy, we find this threshold to be sevenfold less than that for the appearance of surface cracks. Numerical simulations are performed to evaluate the thermal evolution of the inclusion as a function of the laser fluence. From the comparison of experimental and theoretical results, we observe that the pre-damage threshold is closely linked to the melting of the metallic inclusion. Furthermore, the effect of repetitive shots on the evolution of gold inclusion absorption is examined experimentally and discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:据信吸收缺陷会引起热效应,从而导致激光损坏,但缺陷吸收与损伤之间的相关性尚未得到明确证明。研究了由包含金纳米颗粒的二氧化硅薄膜组成的模型系统,该金纳米颗粒用作纳米级吸收缺陷。为此,结合脉冲Nd:YAG激光的光热显微镜使我们能够追踪激光辐照前后金夹杂物吸收的演变,而无需重新定位样品。 “损伤前”阈值先前已被定义为激光通量,其导致缺陷吸收的局部改变而没有任何表面改变。由于光热显微镜的高灵敏度,我们发现该阈值比表面裂纹的出现阈值小七倍。进行数值模拟以评估夹杂物的热演化与激光能量密度的关系。通过实验和理论结果的比较,我们观察到破坏前的阈值与金属夹杂物的熔化紧密相关。此外,实验研究了重复射击对金夹杂物吸收演化的影响。 (c)2005 Elsevier B.V.保留所有权利。

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