Lattice dynamics and elastic waves scattering by surrogate atoms in quasi-one dimensional atomic assemblies

S. Cheknoun, S. Sait, B. Bourahla
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Abstract

An analytical and numerical formalism is developed to study the influence of the various positions of substitution atoms B on the scattering and transmission vibration modes in quasi-1D monatomic structures A. The matching technique is employed to calculate the dynamical properties and transmittance spectra of two substituted atomic sites. The theoretical formalism gives a complete description of the lattice dynamics and the vibration-waves propagation in the presence of the impurity sites. Numerical calculations are performed for three different positions of the two substituted atoms B in the low-dimensional structure consisting of double monatomic parallel chains. First, we examine the position where the two B atoms are adjacent in the y-direction, afterwards, we place the two sites side by side in the x-direction. Lastly, the two sites are placed in oblique configuration. The obtained results show that phonons associated to the inhomogeneous structures are strongly dependent on the scattering frequency, elastic force parameters and the position of the atomic substituted sites. In the three considered positions, the presence of the B atoms gives rise to localized vibration effects. The fluctuations observed in the vibration spectra are related to resonances due to the coherent coupling between travelling phonons and the localized vibration modes in the neighborhood of the impurity sites.
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准一维原子集合体中的晶格动力学和代理原子的弹性波散射
建立了一个分析和数值形式主义来研究取代原子 B 的不同位置对准一维单原子结构 A 中的散射和透射振动模式的影响。理论形式对晶格动力学和杂质位点存在时的振动波传播进行了完整的描述。在由双单质平行链组成的低维结构中,我们对两个置换原子 B 的三个不同位置进行了数值计算。首先,我们研究了两个 B 原子在 y 方向上相邻的位置;然后,我们将两个位点在 x 方向上并排放置。最后,将这两个位点斜置。所得结果表明,与非均匀结构相关的声子与散射频率、弹性力参数和原子置换位点的位置密切相关。在所考虑的三个位置上,B 原子的存在产生了局部振动效应。在振动光谱中观察到的波动与共振有关,共振是由杂质位点附近的游动声子和局部振动模式之间的相干耦合引起的。
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