论文标题
狄拉克半准Banis2中相关驱动的电子命名
Correlation-driven electronic nematicity in the Dirac semimetal BaNiS2
论文作者
论文摘要
在BANIS2中,二维Ni Square晶格系统中存在Dirac节点线结构,预计会有显着的电子相关效应。使用扫描隧道显微镜,我们发现了相关电子行为的迹象,即电子非神经性,在局部密度的一对C2对称条纹图案中,在费米能量上方约60 meV处出现。在观测准粒子干扰以及识别狄拉克锥之间的散射时,我们发现真实空间中的条纹模式源于布里渊区边界的电子口袋之间的退化。我们将动量依赖的能量转移与D形式因子相关,我们在数值中对其进行数值模型,以考虑旋转 - 触发器驱动的nematicities的密度波方程框架。这表明在Fermi能量处的状态密度非常低的系统中,仅源自对费米表面的小扰动,这是一种驱动列不稳定性的异常机制。狄拉克点位于D形式因子的节点,几乎不受其影响。这些结果将Banis2作为一种独特的材料,其中狄拉克电子和破坏对称性的电子相关性共存。
In BaNiS2 a Dirac nodal-line band structure exists within a two-dimensional Ni square lattice system, in which significant electronic correlation effects are anticipated. Using scanning tunneling microscopy, we discover signs of correlated-electron behavior, namely electronic nematicity appearing as a pair of C2-symmetry striped patterns in the local density-of-states at ~60 meV above the Fermi energy. In observations of quasiparticle interference, as well as identifying scattering between Dirac cones, we find that the striped patterns in real space stem from a lifting of degeneracy among electron pockets at the Brillouin zone boundary. We infer a momentum-dependent energy shift with d-form factor, which we model numerically within a density wave equation framework that considers spin-fluctuation-driven nematicity. This suggests an unusual mechanism driving the nematic instability, stemming from only a small perturbation to the Fermi surface, in a system with very low density of states at the Fermi energy. The Dirac points lie at nodes of the d-form factor, and are almost unaffected by it. These results highlight BaNiS2 as a unique material in which Dirac electrons and symmetry-breaking electronic correlations coexist.