论文标题
Weyl候选塞比的铁磁状态中强烈相互作用的费米的自旋偏振成像
Spin-polarized imaging of strongly interacting fermions in the ferrimagnetic state of Weyl candidate CeBi
论文作者
论文摘要
宿比具有复杂的磁相图,尽管$ f $状态在促进强相互作用中的作用仍然难以捉摸,但最近已将完全偏振的状态作为Weyl Semimetal。在这里,我们专注于CEBI的较少但时间反转对称性的超磁相,我们的密度功能理论(DFT)计算预测了Fermi级别$ E_ \ MATHRM {F} $附近的其他Weyl节点。我们使用自旋偏振扫描隧道显微镜和光谱法来对巡回的BI $ P $状态上的表面铁磁序进行成像,表明它们与局部CE $ F $状态的轨道杂交。我们在$ e_ \ mathrm {f} $上观察到这种自旋极化签名,与电导光谱中的Fano线形状相吻合,这表明Bi $ p $ state部分kondo屏幕$ f $磁矩,而$ p-f $ hybridization造成了强大的Fermi-Level Band Renormalization。我们的准粒子干扰(QPI)测量值支持$ p $ band的扁平化,这也显示了与DFT一致的频带分裂,并绘制了一致的磁性磁性Weyl Semimetal的一致图片。
CeBi has an intricate magnetic phase diagram whose fully-polarized state has recently been suggested as a Weyl semimetal, though the role of $f$ states in promoting strong interactions has remained elusive. Here we focus on the less-studied, but also time-reversal symmetry-breaking ferrimagnetic phase of CeBi, where our density functional theory (DFT) calculations predict additional Weyl nodes near the Fermi level $E_\mathrm{F}$. We use spin-polarized scanning tunneling microscopy and spectroscopy to image the surface ferrimagnetic order on the itinerant Bi $p$ states, indicating their orbital hybridization with localized Ce $f$ states. We observe suppression of this spin-polarized signature at $E_\mathrm{F}$, coincident with a Fano line shape in the conductance spectra, suggesting the Bi $p$ states partially Kondo screen the $f$ magnetic moments, and this $p-f$ hybridization causes strong Fermi-level band renormalization. The $p$ band flattening is supported by our quasiparticle interference (QPI) measurements, which also show band splitting in agreement with DFT, painting a consistent picture of a strongly interacting magnetic Weyl semimetal.