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二维原子缺陷阵列晶格中双通道声子透射的非线性和新的非线性共振效应。

Effects of nonlinearity and a new nonlinear resonance in two-path phonon transmittance in lattices with two-dimensional arrays of atomic defects.

机构信息

N. N. Semenov Federal Research Center for Chemical Physics of Russian Academy of Sciences, 4 Kosygin Street, Moscow 119991, Russian Federation.

National Research University Higher School of Economics, 34 Tallinskaya Str., Moscow 101000, Russian Federation.

出版信息

Phys Rev E. 2023 May;107(5-1):054217. doi: 10.1103/PhysRevE.107.054217.

Abstract

The paper is devoted to analytical and numerical studies of the effects of nonlinearity on the two-path phonon interference in the transmission through two-dimensional arrays of atomic defects embedded in a lattice. The emergence of transmission antiresonance (transmission node) in the two-path system is demonstrated for the few-particle nanostructures, which allow us to model both linear and nonlinear phonon transmission antiresonances. The universality of destructive-interference origin of transmission antiresonances of waves of different nature, such as phonons, photons, and electrons, in two-path nanostructures and metamaterials is emphasized. Generation of the higher harmonics as a result of the interaction of lattice waves with nonlinear two-path atomic defects is considered, and the full system of nonlinear algebraic equations is obtained to describe the transmission through nonlinear two-path atomic defects with an account for the generation of second and third harmonics. Expressions for the coefficients of lattice energy transmission through and reflection from the embedded nonlinear atomic systems are derived. It is shown that the quartic interatomic nonlinearity shifts the antiresonance frequency in the direction determined by the sign of the nonlinear coefficient and enhances in general the transmission of high-frequency phonons due to third harmonic generation and propagation. The effects of the quartic nonlinearity on phonon transmission are described for the two-path atomic defects with a different topology. Transmission through the nonlinear two-path atomic defects is also modeled with the simulation of the phonon wave packet, for which the proper amplitude normalization is proposed and implemented. It is shown that the cubic interatomic nonlinearity red shifts in general the antiresonance frequency for longitudinal phonons independently of the sign of the nonlinear coefficient, and the equilibrium interatomic distances (bond lengths) in the atomic defects are changed by the incident phonon due to cubic interatomic nonlinearity. For longitudinal phonons incident on a system with the cubic nonlinearity, the new narrow transmission resonance on the background of a broad antiresonance is predicted to emerge, which we relate to the opening of the additional transmission channel for the phonon second harmonic through the nonlinear defect atoms. Conditions of the existence of the new nonlinear transmission resonance are determined and demonstrated for different two-path nonlinear atomic defects. A two-dimensional array of embedded three-path defects with an additional weak transmission channel, in which a linear analog of the nonlinear narrow transmission resonance on the background of a broad antiresonance is realized, is proposed and modeled. The presented results provide better understanding and detailed description of the interplay between the interference and nonlinearity in phonon propagation through and scattering in two-dimensional arrays of two-path anharmonic atomic defects with a different topology.

摘要

本文致力于研究非线性效应对嵌入晶格二维原子缺陷阵列中双路径声子干涉传输的分析和数值影响。对于允许模拟线性和非线性声子传输共振的少粒子纳米结构,证明了双路径系统中传输反共振(传输节点)的出现。强调了不同性质的波,如声子、光子和电子,在双路径纳米结构和超材料中传输反共振的破坏性干涉起源的普遍性。考虑晶格波与非线性双路径原子缺陷相互作用产生高次谐波的情况,并得到了描述非线性双路径原子缺陷的全非线性代数方程组,同时考虑了二次和三次谐波的产生。推导出晶格能量通过和从嵌入非线性原子系统反射的传输系数表达式。结果表明,四次原子间非线性使反共振频率沿非线性系数符号确定的方向移动,并由于三次谐波的产生和传播,通常增强高频声子的传输。对于具有不同拓扑结构的双路径原子缺陷,描述了四次非线性对声子传输的影响。还通过声子波包的模拟来模拟非线性双路径原子缺陷的传输,为此提出并实施了适当的幅度归一化。结果表明,三次原子间非线性通常使声子的反共振频率红移,与非线性系数的符号无关,并且由于三次原子间非线性,原子缺陷中的平衡原子间距离(键长)会发生变化。对于入射声子,预测在具有立方非线性的系统中会出现新的窄传输共振,这与通过非线性缺陷原子打开声子二次谐波的附加传输通道有关。确定并演示了不同双路径非线性原子缺陷的新非线性传输共振存在的条件。提出并模拟了具有附加弱传输通道的嵌入式三路径缺陷的二维阵列,其中实现了宽反共振背景下的线性窄传输共振的类似物。所提出的结果提供了对通过不同拓扑二维双路径非谐原子缺陷阵列传播和散射的声子干涉与非线性相互作用的更好理解和详细描述。

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