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Theoretical studies on phonon density of states in nonstoichiometric palladium hydrides

机译:非分层钯氢化钯态声子密度的理论研究

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We investigate the phonon density of states in nonstoichiometric palladium hydrides PdH_x, in order to clarify the contribution of lattice vibrations to superconductivity. We employ the Burger-MacLachlan model, which considers a one-dimensional triply-connected diatomic chains with randomly distributed vacancies, focusing on the <111> direction in the rock-salt lattice of PdH_x. The phonon density of states is calculated by the forced oscillator method suitable for random systems. We find that phonon modes at high frequencies change from localized to collective modes with increasing x and the crossover stoichiometry is consistent with that of the appearance of superconductivity. These results support the optical phonon mechanism for superconductivity in PdH_x.
机译:我们研究了氢化钯氢化物PDH_X中的状态的声子密度,以阐明晶格振动对超导性的贡献。我们采用了汉堡 - Maclachlan模型,该模型考虑了一维三角形的硅藻链,其具有随机分布的空位,聚焦在Pdh_x的岩盐晶格中的<111>方向上。状态的声子密度由适用于随机系统的强制振荡器方法计算。我们发现高频率下的声子模式从局部变为集体模式,随着x的增加,交叉化学计量与超导性外观一致。这些结果支持PDH_X中的超导电位机制。

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