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BOUNDARY-INDUCED VIBRATIONAL SPECTRA BROADENING IN NANOSTRUCTURES

机译:纳米结构中的边界诱导的振动光谱展大

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Vibrational spectra are calculated and analyzed for nanos-tructures (including thin films, nanowires, and quantum dots) of yttria, an important laser host material. Lattice dynamics results show that vibrational spectra of nanocrystals are distinct from that of the bulk crystal, in the extended tails at low and high frequencies. This broadening of vibrational spectra is found to be resulted from the broadening of atomic spring constants at both surface and interior, especially at the surface. Molecular dynamics simulations are employed to further decompose the contributions of the surface and internal atoms, respectively. The results show explicitly that the surface spectra have evident tails and the interior spectra have moderate tails, confirming the results of lattice dynamics calculations.
机译:计算和分析振动光谱,并分析用于YtTRIA的纳米结构(包括薄膜,纳米线和量子点),这是一种重要的激光宿主材料。晶格动力学结果表明,纳米晶体的振动光谱不同于散装晶体,在低频和高频下的延伸尾部。发现这种振动光谱的扩展是由在表面和内部的原子春季延长,特别是在表面处引起的。使用分子动力学模拟以分别分解表面和内部原子的贡献。结果明确地显示了表面光谱具有明显的尾部,内部光谱具有中等的尾部,确认晶格动力学计算的结果。

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