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Germanium isotope effect induced guest rattling and cage distortion in clathrates

机译:锗同位素效应引起包合物中的客人嘎嘎声和笼形畸变

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Intermetallic clathrates are materials characterized by a large cage structure where guest atoms can move anharmonically, providing these materials exotic thermoelectric properties. Unfortunately, the dynamical and atomic nature of the rattling phonons, and their interactions with the electronic structure, are not fully understood. Here, we report that a germanium isotope effect can trigger an inherent guest rattling and cage distortion in clathrate Ba_(8)Ga_(16)Ge_(30) (BGG). Raman-scattering spectroscopy and advanced electron microscopy demonstrate that the atomic germanium isotope effect induces an off-centre rattling at the 6d sites as well as a tetrakaidecahedron deformation which is anisotropic for n -type BGG but isotropic for p -type BGG. The present findings indicate that the large n -type germanium isotope effect arises from the strong electron-phonon coupling, which opens up a novel avenue for manipulating dynamical motions of phonons via atomic isotope engineering.
机译:金属间包合物是一种具有大笼形结构的材料,其中来宾原子可以不和谐地移动,从而为这些材料提供了奇特的热电特性。不幸的是,尚未完全理解颤动声子的动力学和原子性质以及它们与电子结构的相互作用。在这里,我们报告锗同位素效应可以触发包合物Ba_(8)Ga_(16)Ge_(30)(BGG)中固有的客人嘎嘎声和笼形畸变。拉曼散射光谱和先进的电子显微镜证明,原子锗同位素效应引起6d位偏心嘎嘎声以及四kai十二面体变形,这对于n型BGG是各向异性的,而对于p型BGG是各向异性的。目前的发现表明,大的n型锗同位素效应来自于强的电子-声子耦合,这为通过原子同位素工程操纵声子的动力学运动开辟了一条新途径。

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