The Influence of Crystal Anisotropy on the Characteristics of Solitary Waves in the Nonlinear Supratransmission Effect: Molecular Dynamic Modeling

IF 1.9 Q2 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Computation Pub Date : 2023-10-02 DOI:10.3390/computation11100193
Pavel V. Zakharov, Elena A. Korznikova, Artem A. Izosimov, Andrey S. Kochkin
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引用次数: 1

Abstract

This study examines the mechanism of nonlinear supratransmission (NST), which involves the transfer of disturbance to discrete media at frequencies not supported by the structure. We considered a model crystal with A3B stoichiometry. The investigation was carried out using atomistic modeling through molecular dynamics. The interatomic interaction was determined by a potential obtained through the embedded atom method, which approximates the properties of the Pt3Al crystal. The effect of NST is an important property of many discrete structures. Its existence requires the discreteness and nonlinearity of the medium, as well as the presence of a forbidden zone in its spectrum. This work focuses on the differences in the NST effect due to the anisotropy of crystallographic directions. Three planes along which the disturbance caused by NST propagated were considered: (100), (110), and (111). It was found that the intensity of the disturbance along the (100) plane is an order of magnitude lower than for more densely packed directions. Differences in the shape of solitary waves depending on the propagation direction were shown. Moreover, all waves can be described by a single equation, being a solution of the discrete variational equations of macroscopic and microscopic displacements, with different parameters, emphasizing the unified nature of the waves and the contribution of crystal anisotropy to their properties. Studying the NST phenomenon is essential due to numerous applications of the latter, such as implications in information transmission and signal processing. Understanding how disturbances propagate in discrete media could lead to advancements in communication technologies, data storage, and signal amplification where the earlier mentioned ability to describe it with analytical equations is of particular importance.
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晶体各向异性对非线性超传输效应中孤波特性的影响:分子动力学模型
本研究探讨了非线性超传输(NST)的机制,它涉及在结构不支持的频率下将扰动传递到离散介质。我们考虑了一个具有A3B化学计量的模型晶体。通过分子动力学的原子模型进行了研究。原子间的相互作用由嵌入原子法得到的电位确定,该电位近似于Pt3Al晶体的性质。NST效应是许多离散结构的一个重要性质。它的存在需要介质的离散性和非线性,以及在其光谱中存在一个禁区。本文主要研究了由于晶体方向各向异性导致的NST效应的差异。考虑由NST引起的扰动沿三个平面传播:(100)、(110)和(111)。研究发现,沿(100)平面的扰动强度比密度更大的方向低一个数量级。结果表明,随着传播方向的不同,孤立波的形状也不同。此外,所有的波都可以用一个方程来描述,它是宏观和微观位移的离散变分方程的解,具有不同的参数,强调了波的统一性和晶体各向异性对其性质的贡献。由于NST在信息传输和信号处理等诸多领域的应用,研究NST现象是必不可少的。了解干扰如何在离散介质中传播可以导致通信技术,数据存储和信号放大的进步,其中前面提到的用解析方程描述它的能力是特别重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Computation
Computation Mathematics-Applied Mathematics
CiteScore
3.50
自引率
4.50%
发文量
201
审稿时长
8 weeks
期刊介绍: Computation a journal of computational science and engineering. Topics: computational biology, including, but not limited to: bioinformatics mathematical modeling, simulation and prediction of nucleic acid (DNA/RNA) and protein sequences, structure and functions mathematical modeling of pathways and genetic interactions neuroscience computation including neural modeling, brain theory and neural networks computational chemistry, including, but not limited to: new theories and methodology including their applications in molecular dynamics computation of electronic structure density functional theory designing and characterization of materials with computation method computation in engineering, including, but not limited to: new theories, methodology and the application of computational fluid dynamics (CFD) optimisation techniques and/or application of optimisation to multidisciplinary systems system identification and reduced order modelling of engineering systems parallel algorithms and high performance computing in engineering.
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