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A multilevel component mode synthesis approach for the calculation of the phonon density of states of nanocomposite structures

机译:一种计算纳米复合结构态声子密度的多能级模态合成方法

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摘要

In this paper, a multilevel component mode synthesis (MCMS) approach is presented for the calculation of the phonon density of states (PDOS) of nanocomposite structures. In this approach, the nanocomposite structures are described by hierarchical levels of substructures. The phonon frequencies and modes are first computed for the bottom level substructures by using the theory of lattice dynamics. The computed component modes are then synthesized by using a quasi-static component mode synthesis (QSM) technique to obtain the phonon modes of the upper-level substructures in a bottom-up manner. By repeating this procedure, the PDOS of the entire nanostructure can be obtained. The proposed approach, while retains the atomic description of the nanocomposite structure, significantly reduces the computational cost of the calculation. Numerical calculations show that the proposed approach provides accurate results with a much less computational cost. The PDOS of several 1-D atom chains and 2-D atom sheets are computed by using the MCMS.
机译:在本文中,提出了一种用于计算纳米复合结构的声子态密度(PDOS)的多级分量模式合成(MCMS)方法。在这种方法中,纳米复合结构是通过子结构的层次层次来描述的。首先使用晶格动力学理论为底层子结构计算声子频率和模。然后,使用准静态分量模态合成(QSM)技术合成计算出的分量模态,从而以自下而上的方式获得上层子结构的声子模态。通过重复该过程,可以获得整个纳米结构的PDOS。所提出的方法在保留纳米复合结构的原子描述的同时,显着降低了计算的计算成本。数值计算表明,所提出的方法以较少的计算成本提供了准确的结果。通过使用MCMS计算几个1-D原子链和2-D原子片的PDOS。

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