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Moiré Superstructure and Dimensional Crossover of 2D Electronic States on Nanoscale Lead Quantum Films

机译:纳米级铅量子薄膜上二维电子态的莫尔条纹超结构和尺寸分界

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摘要

We investigate using scanning tunneling microscopy and spectroscopy electronic aspects of Moiré superstructures in nanoscale Pb quantum films grown on IrTe2, which is a unique layered material with charge-order transitions into stripe phases. Pb ultrathin films exhibit a Moiré superstructure due to the lattice mismatch of Pb and IrTe2, which produces strong lateral electronic modulation of hexagonal symmetry and discreet subbands. Moreover, strongly anisotropic or 1D electronic states are formed in Pb films as modulated by the stripe charge order. Present results indicate the controllability of lateral electronic structures of various ultrathin films by extra interfacial potentials due not only to Moiré superstructures but also to novel electronic orderings of substrates.
机译:我们使用IrTe2上生长的纳米级Pb量子膜中的莫尔超结构的扫描隧道显微镜和光谱电子学方面进行研究,该膜是电荷阶跃转变为条纹相的独特层状材料。由于Pb和IrTe2的晶格失配,Pb超薄膜显示出莫尔超结构,从而产生了六边形对称和离散子带的强侧向电子调制。而且,在Pb膜中形成强各向异性或一维电子状态,受条带电荷顺序调制。目前的结果表明,不仅由于莫尔超结构而且还由于基板的新颖电子有序性,通过超界面电位可控制各种超薄膜的横向电子结构。

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