论文标题
一般扭曲的双层系统中的固有超级反弹频带
Intrinsic Superflat Bands in General Twisted Bilayer Systems
论文作者
论文摘要
具有离散魔术角的扭曲双层系统,例如具有Moiré超晶格的扭曲的双层石墨烯,为探索新型物理特性提供了一种多功能平台。在这里,我们在一般的扭曲双层系统中发现了一类超级反弹频带,超出了魔术角扭曲的对应物的低能物理学。通过考虑连续的晶格脱位,我们获得了固有的局部状态,这些局部状态以最低和最高能量在频谱上分离,并以空间为中心,围绕AA堆叠区域,由宏观有效的能量电位很好地控制。这样的局部状态表现出可忽略的细胞间耦合,并支持在宽而连续的参数空间中形成超级反弹带的形成,可以使用扭曲的双层纳米光系统模仿。我们的发现表明,通用扭曲的双层系统可以实现各种光子,语音和机械波的相应可调性的超级反弹带和相应的局部状态。
Twisted bilayer systems with discrete magic angles, such as twisted bilayer graphene featuring moiré superlattices, provide a versatile platform for exploring novel physical properties. Here, we discover a class of superflat bands in general twisted bilayer systems beyond the low-energy physics of magic-angle twisted counterparts. By considering continuous lattice dislocation, we obtain intrinsic localized states, which are spectrally isolated at lowest and highest energies and spatially centered around the AA stacked region, governed by the macroscopic effective energy potential well. Such localized states exhibit negligible inter-cell coupling and support the formation of superflat bands in a wide and continuous parameter space, which can be mimicked using a twisted bilayer nanophotonic system. Our finding suggests that general twisted bilayer systems can realize continuously tunable superflat bands and the corresponding localized states for various photonic, phononic and mechanical waves.