UGC-DAE Consortium for Scientific Research, Khandwa Road, Indore, 452001, Madhya Pradesh, India.
Theory and Simulations Laboratory, Raja Ramanna Centre for Advanced Technology, Indore, 452013, Madhya Pradesh, India.
Nat Commun. 2023 Jun 19;14(1):3628. doi: 10.1038/s41467-023-39271-1.
LaTe is a non-centrosymmetric material with time reversal symmetry, where the charge density wave is hosted by the Te bilayers. Here, we show that LaTe hosts a Kramers nodal line-a twofold degenerate nodal line connecting time reversal-invariant momenta. We use angle-resolved photoemission spectroscopy, density functional theory with an experimentally reported modulated structure, effective band structures calculated by band unfolding, and symmetry arguments to reveal the Kramers nodal line. Furthermore, calculations confirm that the nodal line imposes gapless crossings between the bilayer-split charge density wave-induced shadow bands and the main bands. In excellent agreement with the calculations, spectroscopic data confirm the presence of the Kramers nodal line and show that the crossings traverse the Fermi level. Furthermore, spinless nodal lines-completely gapped out by spin-orbit coupling-are formed by the linear crossings of the shadow and main bands with a high Fermi velocity.
LaTe 是一种具有时间反演对称性的非中心对称材料,其中的电荷密度波由 Te 双层承载。在这里,我们表明 LaTe 承载了一个 Kramer 节点线——一个连接时间反演不变动量的两倍简并节点线。我们使用角分辨光发射谱、基于实验报道的调制结构的密度泛函理论、通过能带展开计算的有效能带结构以及对称论证来揭示 Kramer 节点线。此外,计算结果证实,节点线在双层分裂电荷密度波诱导的阴影带和主能带之间产生了无能隙交叉。与计算结果非常吻合的是,谱学数据证实了 Kramer 节点线的存在,并表明交叉穿过费米能级。此外,由自旋轨道耦合完全消除的无自旋节点线是由阴影带和主带的线性交叉形成的,具有高费米速度。