角分辨光电子能谱
半金属
费米面
表面状态
费米能级
凝聚态物理
拓扑(电路)
材料科学
电子结构
单层
过渡金属
光电发射光谱学
电子
曲面(拓扑)
超导电性
物理
X射线光电子能谱
化学
纳米技术
几何学
量子力学
核磁共振
带隙
组合数学
催化作用
生物化学
数学
作者
A. S. Wadge,B.J. Kowalski,Carmine Autieri,P. Iwanowski,A. Hruban,Natalia Olszowska,Marcin Rosmus,J. Kołodziej,A. Wiśniewski
出处
期刊:Physical review
[American Physical Society]
日期:2022-06-23
卷期号:105 (23)
标识
DOI:10.1103/physrevb.105.235304
摘要
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI