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非仿射运动导致的非晶态固体中声衰减理论

Theory of sound attenuation in amorphous solids from nonaffine motions.

作者信息

Baggioli M, Zaccone A

机构信息

Wilczek Quantum Center, School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.

Shanghai Research Center for Quantum Sciences, Shanghai 201315, People's Republic of China.

出版信息

J Phys Condens Matter. 2022 Mar 29;34(21). doi: 10.1088/1361-648X/ac5d8b.

Abstract

We present a theoretical derivation of acoustic phonon damping in amorphous solids based on the nonaffine response formalism for the viscoelasticity of amorphous solids. The analytical theory takes into account the nonaffine displacements in transverse waves and is able to predict both the ubiquitous low-energy diffusive damping ∼, as well as a novel contribution to the Rayleigh damping ∼at higher wavevectors and the crossover between the two regimes observed experimentally. The coefficient of the diffusive term is proportional to the microscopic viscous (Langevin-type) damping in particle motion (which arises from anharmonicity), and to the nonaffine correction to the static shear modulus, whereas the Rayleigh damping emerges in the limit of low anharmonicity, consistent with previous observations and macroscopic models. Importantly, theRayleigh contribution derived here does not arise from harmonic disorder or elastic heterogeneity effects and it is the dominant mechanism for sound attenuation in amorphous solids as recently suggested by molecular simulations.

摘要

我们基于非晶态固体粘弹性的非仿射响应形式,给出了非晶态固体中声子阻尼的理论推导。该解析理论考虑了横波中的非仿射位移,能够预测普遍存在的低能扩散阻尼,以及在较高波矢下对瑞利阻尼的新贡献,以及实验观察到的两种机制之间的交叉。扩散项的系数与粒子运动中的微观粘性(朗之万型)阻尼(由非谐性引起)以及静态剪切模量的非仿射修正成正比,而瑞利阻尼在低非谐性极限下出现,这与之前的观察和宏观模型一致。重要的是,这里推导的瑞利贡献并非源于谐波无序或弹性非均匀性效应,并且正如最近分子模拟所表明的,它是非晶态固体中声音衰减的主导机制。

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