论文标题

局部电子相关对弱巡回Ferromagnet Zrzn $ _2 $的费米学的影响

Local electron correlation effects on the Fermiology of the weak itinerant ferromagnet ZrZn$_2$

论文作者

Chen, Wenhan, James, A. D. N., Dugdale, S. B.

论文摘要

费米表面拓扑在金属的宏观特性中起着重要作用。它可能对电子相关尤其敏感,这对于弱务实的铁磁铁Zrzn $ _ {2} $似乎特别重要。在这里,我们探讨了该金属化合物在其顺磁相的预测费米表面片的差异,用于密度功能理论(DFT)以及DFT与动态平均场理论(DFT+DMFT)的组合。在费米水平上评估的理论频谱函数以及计算$ k $ -space中的电子 - 光子符号密度(也称为两光子momenutm密度),以提供有关Fermi表面拓扑特征的起源的见解。我们将这两个光子动量密度与从正电子歼灭实验数据中提取的相比(Phys。Rev.Lett。92,107003(2004))。与DFT相比,DFT+DMFT密度与实验更一致,尤其是在$ L $和$ W $高对称点附近的平坦乐队方面。 DFT+DMFT中存在于$ L $左右的实验性颈部,与Van Hove的奇异性有关,但在DFT中不存在。我们发现,这些平坦的频段及其Fermi表面拓扑对许多人体电子相关描述敏感,并表明正电子歼灭技术能够探究这一点。该描述对于观察到的行为(例如量子临界点周围的LifShiftz过渡)很重要。

The Fermi surface topology plays an important role in the macroscopic properties of metals. It can be particularly sensitive to electron correlation, which appears to be especially significant for the weak itinerant ferromagnet ZrZn$_{2}$. Here, we look at the differences in the predicted Fermi surface sheets of this metallic compound in its paramagnetic phase for both density functional theory (DFT) and the combination of DFT with dynamical mean field theory (DFT+DMFT). The theoretical spectral functions evaluated at the Fermi level were used along with calculations of the electron-positron momentum density (also known as the two-photon momenutm density) in $k$-space to provide insights into the origin of certain features of the Fermi surface topology. We compare this two photon momentum density to that extracted from the positron annihilation experimental data (Phys. Rev. Lett. 92, 107003 (2004)). The DFT+DMFT densities are in better agreement with the experiment than the DFT, particularly with regard to the flat bands around the $L$ and $W$ high symmetry points. The experimental neck around $L$, which relates to a van Hove singularity, is present in DFT+DMFT but not in the DFT. We find that these flat bands, and as such the Fermi surface topology, are sensitive to the many body electron correlation description, and show that the positron annihilation technique is able to probe this. This description is significant for the observed behavior such as the Lifshiftz transition around the quantum critical point.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源