论文标题
自然不合适结构中的一维电子状态
One-dimensional electronic states in a natural misfit structure
论文作者
论文摘要
不合适的化合物是二维材料的热力学稳定堆栈,形成了三维结构,该结构保持在与层平行的一个方向上保持不相差。结果,两层之间没有任何真正的键合,它们的相互作用是由电荷传递支配的。与这张良好的图片相反,我们表明,层间耦合可以强烈影响一种在不合适的结构中一种类型的层的电子特性,其方式与在二维材料之间的人造Moiré结构中创建改良的带状结构相似。使用具有微米尺度光焦点的角度分辨光发射光谱法,我们选择性地探究了六边形NBSE $ _2 $和方形层的电子特性,这些材料终止了(Bise)$ _ {1+δ} $ nbse $ nbse $ _2 $ _2 $ _2 $ misfit compound。我们表明,在六边形NBSE $ _2 $层的存在下,野外层中的频带结构受到了强烈的影响,从而导致准一维电子特征。另一方面,NBSE $ _2 $层的电子结构几乎不受Bise的存在影响。我们认为,使用密度的功能理论计算,我们认为,一种类型的频带的首选修改主要是由于所涉及的国家的原子和轨道特征,为设计新型电子状态开放了一种有希望的方法,该方法利用了不合适化合物的部分不通压性。
Misfit compounds are thermodynamically stable stacks of two-dimensional materials, forming a three-dimensional structure that remains incommensurate in one direction parallel to the layers. As a consequence, no true bonding is expected between the layers, with their interaction being dominated by charge transfer. In contrast to this well-established picture, we show that interlayer coupling can strongly influence the electronic properties of one type of layer in a misfit structure, in a similar way to the creation of modified band structures in an artificial moiré structure between two-dimensional materials. Using angle-resolved photoemission spectroscopy with a micron-scale light focus, we selectively probe the electronic properties of hexagonal NbSe$_2$ and square BiSe layers that terminate the surface of the (BiSe)$_{1+δ}$NbSe$_2$ misfit compound. We show that the band structure in the BiSe layers is strongly affected by the presence of the hexagonal NbSe$_2$ layers, leading to quasi one-dimensional electronic features. The electronic structure of the NbSe$_2$ layers, on the other hand, is hardly influenced by the presence of the BiSe. Using density functional theory calculations of the unfolded band structures, we argue that the preferred modification of one type of bands is mainly due to the atomic and orbital character of the states involved, opening a promising way to design novel electronic states that exploit the partially incommensurate character of the misfit compounds.