论文标题
Zrsite中拓扑非平凡的鼓头表面状态的准粒子干扰观察
Quasiparticle interference observation of the topologically non-trivial drumhead surface state in ZrSiTe
论文作者
论文摘要
鼓头表面指出,将淋巴结线的环连接在一起,是由于拓扑非平凡的带交叉路口而在Dirac Nodal-line半学中出现的。我们使用低温扫描隧道显微镜和傅立叶转换的扫描隧道光谱法研究了Zrsite的准粒子干扰(QPI)特性。我们的结果表明,在鼓头状态下,两个散射信号通过预测的占据范围的占用和无人占用的能量范围来解决能量摩托车的关系。观察该鼓头状态与先前对ZRSIS和ZRSISE的研究相反,在ZRSIS和ZRSISE上,QPI由拓扑散装的散装带和表面状态主导。此外,我们观察到一个接近$ \ mathbf {k} \ rightarrow-\ mathbf {k} $散射过程跨$γ$ - 点,通过在此材料中的旋转式鼓声频段之间散射。
Drumhead surface states that link together loops of nodal lines arise in Dirac nodal-line semimetals as a consequence of the topologically non-trivial band crossings. We used low-temperature scanning tunneling microscopy and Fourier-transformed scanning tunneling spectroscopy to investigate the quasiparticle interference (QPI) properties of ZrSiTe. Our results show two scattering signals across the drumhead state resolving the energy-momentum relationship through the occupied and unoccupied energy ranges it is predicted to span. Observation of this drumhead state is in contrast to previous studies on ZrSiS and ZrSiSe, where the QPI was dominated by topologically trivial bulk bands and surface states. Furthermore, we observe a near $\mathbf{k} \rightarrow -\mathbf{k}$ scattering process across the $Γ$-point, enabled by scattering between the spin-split drumhead bands in this material.