论文标题

Moiré物理学在倒塌的手性碳纳米管中的普遍性

Universality of moiré physics in collapsed chiral carbon nanotubes

论文作者

Arroyo-Gascón, Olga, Fernández-Perea, Ricardo, Morell, Eric Suárez, Cabrillo, Carlos, Chico, Leonor

论文摘要

我们报告了所有手性碳纳米管崩溃的家族中Moiré模式和魔术角物理的存在。已经对以前通过分子动力学崩溃的所有类型的手性纳米管的电子结构进行了详细研究。我们发现,每个家庭都具有独特的几何形状和莫伊尔的性格,以及特征数量的扁平带。值得注意的是,各种纳米管在魔术角度调整方面的行为相同,显示出一种单调的行为,与扭曲的双层石墨烯完全一致地产生了魔法角度。因此,魔法角度的行为是普遍发现的,手性纳米管的手性角度很小,从而产生了莫伊尔的模式。我们的方法包括对频带结构,状态密度和平坦带信号的局部状态的循环结构的第一原理和半经验计算。

We report the existence of moiré patterns and magic angle physics in all families of chiral collapsed carbon nanotubes. A detailed study of the electronic structure of all types of chiral nanotubes, previously collapsed via molecular dynamics, has been performed. We find that each family possesses a unique geometry and moiré disposition, as well as a characteristic number of flat bands. Remarkably, all kinds of nanotubes behave the same with respect to magic angle tuning, showing a monotonic behavior that gives rise to magic angles in full agreement with those of twisted bilayer graphene. Therefore, magic angle behavior is universally found in chiral collapsed nanotubes with a small chiral angle, giving rise to moiré patterns. Our approach comprises first-principles and semi-empirical calculations of the band structure, density of states and spatial distribution of the localized states signaled by flat bands.

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