论文标题
在PDTE $ _2 $ ULTRATHIN FILMS中观察拓扑表面状态和孤立的表面共振
Observation of Gapped Topological Surface States and Isolated Surface Resonances in PdTe$_2$ Ultrathin Films
论文作者
论文摘要
已知超导体PDTE $ _2 $容纳散装零零带和拓扑表面状态。超导性和拓扑表面状态的共存使PDTE $ _2 $成为探索拓扑超导性和Majoragan Bound State的有前途的平台。在这项工作中,我们报告了高质量pdte $ _2 $膜的逐层分子束外延的生长和光谱表征,厚度低至3个单层(ML)。在3毫升PDTE $ _2 $膜中,我们观察到自旋偏置的表面共振状态,由于量子尺寸效应,它们从散装带中分离出来。另外,相反面部表面状态的杂交导致拓扑表面狄拉克带的厚度依赖性间隙。我们的光发射结果清楚地表明,随着膜厚度的减小,杂交差距的大小增加。通过最先进的分子束外延技术以及对表面共振和敏感的拓扑表面状态的观察,在增长高质量PDTE $ _2 $胶片方面取得了成功,这使PDTE $ _2 $ _2 $量子膜在SpinTronics和拓扑特性计算中的应用中亮相。
The superconductor PdTe$_2$ is known to host bulk Dirac bands and topological surface states. The coexistence of superconductivity and topological surface states makes PdTe$_2$ a promising platform for exploring topological superconductivity and Majorana bound states. In this work, we report the layer-by-layer molecular beam epitaxy growth and spectroscopic characterization of high quality PdTe$_2$ films with thickness down to 3 monolayers (ML). In the 3 ML PdTe$_2$ film, we observed spin-polarized surface resonance states, which are isolated from the bulk bands due to the quantum size effects. In addition, the hybridization of surface states on opposite faces leads to a thickness-dependent gap in the topological surface Dirac bands. Our photoemission results show clearly that the size of the hybridization gap increases as the film thickness is reduced. The success in growing high quality PdTe$_2$ films by state-of-art molecular beam epitaxy technique and the observation of surface resonances and gaped topological surface states sheds light on the applications of PdTe$_2$ quantum films in spintronics and topological computation.