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Thickness- and temperature-dependent Gruneisen parameter in thin films

机译:厚度,并与温度有关的格吕奈森在薄膜参数

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The Gruneisen formula is one of the most important equations of state, in which the Gruneisen parameter plays a key role in the linkage of mechanical and thermal properties of materials. In the present work, for the first time, we investigate the dependence of the Gruneisen parameter on film-thickness and temperature via theoretical modeling and molecular dynamics (MD) simulations. The theoretical analysis gives two analytic expressions of a thickness- and temperature-dependent Gruneisen parameter, and the difference between the two analytic expressions lies in the quadratic or linear dependence on temperature. MD simulations are conducted on face-centered cubic (FCC) Ni, Cu, and Au (001) thin films and their bulk counterparts. The simulation results completely verify the theoretical results and determine the values of parameters involved in the theoretical modeling. The thickness- and temperature-dependent film heat capacity density is also investigated during the course of the Gruneisen parameter study.
机译:格吕奈森公式是最重要的之一状态方程,格吕奈森参数的联系中发挥着关键作用机械和热性能的材料。在目前的工作,我们第一次调查格吕奈森的依赖通过参数对膜厚度和温度理论建模和分子动力学(MD)模拟。的厚度和解析表达式与温度有关的格吕奈森参数两者的区别分析表情在于二次或线性的对温度的依赖。进行面心立方(FCC)镍、铜、和非盟(001)薄膜和散装同行。验证理论结果和确定参与理论的参数值建模。热容与温度有关的电影密度也在调查过程中吗格吕奈森参数研究。

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