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Elasticity theory of ultrathin nanofilms

机译:超薄纳米膜的弹性理论

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摘要

A self-consistent theoretical scheme for describing the elastic behavior of ultrathin nanofilms (UTNFs) was proposed. Taking into account the lower symmetry of an UTNF compared to its bulk counterpart, additional elastic and magnetoelastic parameters were introduced to model the elasticity rigorously. The applications of current theory to several elastic and magnetoelastic systems gave excellent agreement with experiments. More importantly, the surface elastic and magnetoelastic parameters used to fit the experimental results are physically reasonable and in close agreement with those obtained from experiment and simulation. This fact suggests that the additional elastic (magnetoelastic) constants due to symmetry breaking are of great importance in theoretical description of the mechanical properties of UTNFs. And we proved that the elasticity of UTNFs should be described by a three-dimensional model just including the intrinsic surface and bulk parameters, but not the effective surface parameters. It is believed that the theory reported here is a universal strategy for elasticity and magnetoelasticity of ultrathin films.
机译:提出了描述超薄纳米膜(UTNFs)弹性行为的自洽理论方案。考虑到UTNF与其整体副本相比对称性较低,因此引入了额外的弹性和磁弹性参数来对弹性进行严格建模。当前理论在几种弹性和磁弹性系统中的应用与实验具有极好的一致性。更重要的是,用于拟合实验结果的表面弹性和磁弹性参数在物理上是合理的,并且与从实验和模拟获得的参数非常吻合。这一事实表明,由于对称破坏而产生的附加弹性(磁弹性)常数在UTNF机械特性的理论描述中非常重要。并且我们证明了UTNF的弹性应该用一个三维模型来描述,该模型只包括固有的表面和体积参数,而不包括有效的表面参数。可以认为,这里报道的理论是超薄膜的弹性和磁弹性的通用策略。

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