论文标题
Weyl Semimetal NBP的拓扑Lifshitz过渡,装饰有重元素
Topological Lifshitz transition in Weyl semimetal NbP decorated with heavy elements
论文作者
论文摘要
对原位覆盖NBP半学的FERMI表面修饰的研究通过角度分辨光发射光谱(ARPES)进行了重型元素PB和NB Ultrathin层的研究。首先,研究了电子结构的原始单晶体,具有(0 0 1)表面的两个可能的终止(p和nb)。这两个切割平面的电子状态的性质不同:p端的表面显示勺子和领结形状的指纹,而这些形状不存在于NB端端的表面。 ARPES研究表明,即使是PB的1个单层(ML)也会在P和NB终止的表面引起拓扑量子Lifshitz转变(TQLT)。沉积的PB 5D电子具有广泛的原子轨道,可与PB端端的表面进行强杂交,并在费米能的相应变化中。与PB相比,NB的扰动能力较小,因为NB的自旋轨道耦合较弱。经受大约1.3 mL NB的表面装饰的NB终止表面在费米表面没有显着修饰。对于NB装饰的p端面表面,大约1 mL的沉积会修饰NBP的电子结构,并且位于TQLT的边缘。尽管表面上的重元素具有强大的自旋轨道和强大的杂交,但由于块状拓扑的稳健性,可以观察到表面状态的TQLT。
Studies of the Fermi surface modification after in-situ covering NbP semimetal with heavy elements Pb and Nb ultrathin layers were performed by means of angle-resolved photoemission spectroscopy (ARPES). First, the electronic structure was investigated for pristine single crystals with two possible terminations (P and Nb) of the (0 0 1) surface. The nature of the electronic states of these two cleaving planes is different: P-terminated surface shows spoon and bow tie shaped fingerprints, whereas these shapes are not present in Nb-terminated surfaces. ARPES studies show that even 1 monolayer (ML) of Pb causes topological quantum Lifshitz transition (TQLT) in P- and Nb-terminated surfaces. Deposited Pb 5d electrons have wide extended atomic orbitals which leads to strong hybridization with Pb-terminated surface and a corresponding shift in the Fermi energy. Nb has less capability to perturb the system than Pb because Nb has weaker spin-orbit coupling than Pb. Nb-terminated surface subjected to surface decoration with approximately 1.3 ML of Nb shows no dramatic modification in the Fermi surface. In the case of Nb decorated P-terminated surface, deposition of approximately 1 ML modifies the electronic structure of NbP and it is on the verge of TQLT. Despite the strong spin-orbit and strong hybridization of the heavy elements on the surface, it is possible to observe the TQLT of the surface states thanks to the robustness of the bulk topology.