论文标题
测量和模拟溅射无定形SIC涂层的机械和光学特性
Measurement and simulation of mechanical and optical properties of sputtered amorphous SiC coatings
论文作者
论文摘要
在这项工作中,我们报告了通过物理沉积方法制备的无定形硅(A-SIC)涂层的广泛表征。我们比较了在两个不同的溅射系统(标准的RF磁控溅射和一个离子梁辅助溅射)上获得的结果,以抓住两个不同设置对结果的重复效果。 在对制备样品的结构,形态和组成特征进行了彻底表征之后,我们重点介绍了对这些材料中光学和机械损失的详细研究。通过将我们的实验结果与无定形SIC结构的分子动态模拟进行比较,从显微镜的角度进一步研究了机械损失:首先,我们定义了一种协议来生成无定形膜的数值模型,从而捕获了真实系统的主要特征;然后,我们在变形后模拟其动力学行为,以获得其机械响应。我们的结果在A-SIC作为高精度光学实验的光学材料的角度应用中进行了讨论,尤其是在重力波干涉仪中。
In this work We report on the extensive characterization of amorphous silicon carbide (a-SiC) coatings prepared by physical deposition methods. We compare the results obtained on two different sputtering systems (a standard RF magnetron sputtering and a ion-beam assisted sputtering) to seize the impact of two different setups on the repeatably of the results. After a thorough characterization of structural, morphological, and compositional characteristics of the prepared samples, we focus on a detailed study of the optical and mechanical losses in those materials. Mechanical losses are further investigated from a microscopic point of view by comparing our experimental results with molecular dynamic simulations of the amorphous SiC structure: first we define a protocol to generate a numerical model of the amorphous film, capturing the main features of the real system; then we simulate its dynamical behaviour upon deformation in order to obtain its mechanical response. Our results are discussed within the perspective application of a-SiC as an optical material for high-precision optical experiments and in particular in gravitational wave interferometry.