论文标题

相应$ \ left的表面结构和堆叠(\ sqrt {13} \ times \ sqrt {13} \ right)$ r13.9°电荷密度波阶段1t-tas $ _2 $(0001)

Surface structure and stacking of the commensurate $\left(\sqrt{13}\times\sqrt{13}\right)$R13.9° charge density wave phase of 1T-TaS$_2$(0001)

论文作者

von Witte, Gevin, Kißlinger, Tilman, Horstmann, Jan Gerrit, Rossnagel, Kai, Schneider, M. Alexander, Ropers, Claus, Hammer, Lutz

论文摘要

通过定量的低能电子衍射(LEED),我们研究了三角刺tantalum disulphide(1T-TAS $ _2 $)的广泛研究的相称的电荷密度波(CDW)阶段,该阶段是在低温下以$ \ weft(\ sqrt {13} {13} \ times \ sqrt \ sqrt} 9°\ sqrt \ sqrt {13°{周期性。对衍射点强度的能量依赖性的全动力分析揭示了整个晶体学表面结构,即在最外层两个三层层中的详细原子位置,包括78个原子以及CDW堆叠。该分析基于一个异常大的数据集,该数据集由在20-250 eV的能量范围内采用的128个不相等光束的光谱组成,以及由r = 0.110的BestFit Pendry r-factor表达的出色拟合质量。 LEED强度分析表明,散装结构的TA原子的戴星形星形簇的良好模型也适用于最外层的两个TA $ _2 $ _2 $ Trilayers。具体而言,在这两层中,Ta原子的簇横向收缩高达0.25 $Å$,并且在上层建筑电池内略微旋转,从而在邻近的硫层中引起各自的扭曲以及沉重的屈曲(高达0.23 $Å$)。最重要的是,我们的分析发现1 $^{\ text {st}} $和2 $^{\ text {nd}} $ trilayer的CDW垂直对齐,而基本六边形lattice的两个侧向横向移动(6.71 $Å$) 3 $^{\ text {rd}} $ tralayer。结果可能有助于更好地理解参考化合物1T-TAS $ _2 $的复杂电子结构,并指导分析相似量子材料中复杂结构的方式。

By quantitative low-energy electron diffraction (LEED) we investigate the extensively studied commensurate charge density wave (CDW) phase of trigonal tantalum disulphide (1T-TaS$_2$), which develops at low temperatures with a $\left(\sqrt{13}\times\sqrt{13}\right)$R13.9° periodicity. A full-dynamical analysis of the energy dependence of diffraction spot intensities reveals the entire crystallographic surface structure, i.e. the detailed atomic positions within the outermost two trilayers consisting of 78 atoms as well as the CDW stacking. The analysis is based on an unusually large data set consisting of spectra for 128 inequivalent beams taken in the energy range 20-250 eV and an excellent fit quality expressed by a bestfit Pendry R-factor of R=0.110. The LEED intensity analysis reveals that the well-accepted model of star-of-David-shaped clusters of Ta atoms for the bulk structure also holds for the outermost two TaS$_2$ trilayers. Specifically, in both layers the clusters of Ta atoms contract laterally by up to 0.25 $Å$ and also slightly rotate within the superstructure cell, causing respective distortions as well as heavy bucklings (up to 0.23 $Å$) in the adjacent sulphur layers. Most importantly, our analysis finds that the CDWs of the 1$^{\text{st}}$ and 2$^{\text{nd}}$ trilayer are vertically aligned, while there is a lateral shift of two units of the basic hexagonal lattice (6.71 $Å$) between the 2$^{\text{nd}}$ and 3$^{\text{rd}}$ trilayer. The results may contribute to a better understanding of the intricate electronic structure of the reference compound 1T-TaS$_2$ and guide the way to the analysis of complex structures in similar quantum materials.

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