论文标题

电子相关性对高压铁的影响:来自时间依赖性密度功能理论的见解

Impact of Electronic Correlations on High-Pressure Iron: Insights from Time-Dependent Density Functional Theory

论文作者

Ramakrishna, Kushal, Lokamani, Mani, Baczewski, Andrew, Vorberger, Jan, Cangi, Attila

论文摘要

我们对在环境温度下高压下铁的电导率和热导率进行了全面研究,并采用了时间依赖性密度功能理论(RT-TDDFT)的实时公式。具体而言,我们检查了Hubbard校正(+\ textit {u})的影响,以说明强电子相关性。我们基于RT-TDDFT的计算表明,评估的高压身体中心(BCC)和六边形密闭(HCP)铁相的电导率都与实验数据一致。此外,我们探讨了高压下HCP铁导热率的各向异性,我们的发现与实验观察一致。有趣的是,我们发现 +\ textit {u}校正的掺入会显着影响铁在50 GPA以下的压力下的基态和线性响应特性,其影响随着压力的增加而减小。这项研究提供了对电子相关性对铁在极端条件下电子传输特性的影响的宝贵见解。

We present a comprehensive investigation of the electrical and thermal conductivity of iron under high pressures at ambient temperature, employing the real-time formulation of time-dependent density functional theory (RT-TDDFT). Specifically, we examine the influence of a Hubbard correction (+\textit{U}) to account for strong electron correlations. Our calculations based on RT-TDDFT demonstrate that the evaluated electrical conductivity for both high-pressure body-centered cubic (BCC) and hexagonal close-packed (HCP) iron phases agrees well with experimental data. Furthermore, we explore the anisotropy in the thermal conductivity of HCP iron under high pressure, and our findings are consistent with experimental observations. Interestingly, we find that the incorporation of the +\textit{U} correction significantly impacts the ground state and linear response properties of iron at pressures below 50 GPa, with its influence diminishing as pressure increases. This study offers valuable insights into the influence of electronic correlations on the electronic transport properties of iron under extreme conditions.

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