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首页> 外文期刊>Journal of physical chemistry letters >Time-Domain ab Initio Modeling of Electron-Phonon Relaxation in High-Temperature Cuprate Superconductors
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Time-Domain ab Initio Modeling of Electron-Phonon Relaxation in High-Temperature Cuprate Superconductors

机译:高温铜超导体中电子声子松弛的时域AB初步建模

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摘要

Superconducting pairing due to electron-phonon coupling is investigated in recent pump-probe experiments. Combining time-dependent density functional theory and nonadiabatic molecular dynamics, we report the first direct modeling of such experiments and show how the electron-phonon relaxation depends on chemical bonding, electron-phonon coupling, and electronic state density. The relaxation rate is determined primarily by the nonadiabatic charge-phonon coupling strength, which in turn depends on the strength of chemical interactions between the key atoms, reflected in the wave function delocalization. The differences in the electronic density of states constitute the secondary factor. Having obtained good agreement with the experimental data on YBa2Cu3O6.5, we predict that the relaxation slows if Y is replaced with Sc or Ba with Sr, while the relaxation accelerates if 0 is replaced with S, indicating that YBa2Cu3S6.5 can exhibit improved superconducting performance.
机译:在最近的泵探针实验中研究了由于电子 - 声子耦合引起的超导配对。 组合时间依赖性密度函数理论和非等级分子动力学,我们报告了这种实验的第一直接建模,并展示了电子 - 声子弛豫的方式取决于化学键合,电子 - 声子耦合和电子状态密度。 弛豫速率主要由非等压电荷 - 声子耦合强度确定,这又取决于在波函数临床化中反映的关键原子之间的化学相互作用的强度。 状态的电子密度的差异构成次要因素。 获得了与YBA2CU3O6.5上的实验数据进行了良好的一致性,我们预测,如果y用SR替换为SR或BA,则弛豫会加速,而弛豫加速如果0被S替换,则表明YBA2CU3S6.5可以表现出改善的超导 表现。

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