论文标题

晶状体动力学和依赖两极化的声子阻尼$α$ - 相Fesi $ _ {2} $ nanoislands

Lattice dynamics and polarization-dependent phonon damping in $α$-phase FeSi$_{2}$ nanoislands

论文作者

Kalt, J., Sternik, M., Krause, B., Sergueev, I., Mikolasek, M., Bessas, D., Sikora, O., Vitova, T., Göttlicher, J., Steininger, R., Jochym, P. T., Ptok, A., Leupold, O., Wille, H. -C., Chumakov, A. I., Piekarz, P., Parlinski, K., Baumbach, T., Stankov, S.

论文摘要

我们确定了亚稳态,表面稳定的$α$α$α$ _2 $ nanoislands的晶格动力学的外延(111)表面生长,平均高度和宽度分别为1.5至20 nm和18至72 nm。通过反射高能电子衍射,原子力显微镜和X射线吸收光谱研究,研究了纳米群岛的晶体学取向,表面形态和局部晶体结构。通过核非弹性散射获得的状态(PDOS)的铁子密度(PDOS)表现出明显的阻尼和宽广的光谱特征,而平均岛的高度降低。偏振专门的Si-和Fe-Partial声子分散和PDO的第一原理计算使$ xy $ - $ xy $ - 以及$ z $极偏置的声子对实验PDOS的贡献进行了分解。用理论结果对实验数据进行建模揭示了$ z $极化的声子对平均尺寸低于10 nm的岛屿的阻尼。这种现象归因于以下事实:低能$ z $偏振的声子夫妇夫妇伴随着低能的表面/界面振动模式。从实验数据获得的热力学和弹性特性表明,明显的尺寸依赖性行为。

We determined the lattice dynamics of metastable, surface-stabilized $α$-phase FeSi$_2$ nanoislands epitaxially grown on the Si(111) surface with average heights and widths ranging from 1.5 to 20 nm and 18 to 72 nm, respectively. The crystallographic orientation, surface morphology and local crystal structure of the nanoislands were investigated by reflection high-energy electron diffraction, atomic force microscopy and X-ray absorption spectroscopy. The Fe-partial phonon density of states (PDOS), obtained by nuclear inelastic scattering, exhibits a pronounced damping and broadening of the spectral features with decreasing average island height. First-principles calculations of the polarization-projected Si- and Fe-partial phonon dispersions and PDOS enable the disentanglement of the contribution of the $xy$- and $z$-polarized phonons to the experimental PDOS. Modeling of the experimental data with the theoretical results unveils an enhanced damping of the $z$-polarized phonons for islands with average sizes below 10 nm. This phenomenon is attributed to the fact that the low-energy $z$-polarized phonons couple to the low-energy surface/interface vibrational modes. The thermodynamic and elastic properties obtained from the experimental data show a pronounced size-dependent behavior.

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