论文标题

用一维超晶格在石墨烯中平坦的各向异性带

Anisotropic band flattening in graphene with 1D superlattices

论文作者

Li, Yutao, Dietrich, Scott, Forsythe, Carlos, Taniguchi, Takashi, Watanabe, Kenji, Moon, Pilkyung, Dean, Cory R.

论文摘要

具有空间周期电势的模式石墨烯为修改其电子特性提供了一种强大的手段。在扭曲的双层中已经证明了戏剧性的效果,在该双层中,与所得的Moiré-Superlattice的耦合产生了一个孤立的平坦带,该扁平带具有相关的多体阶段。然而,有效莫伊势的对称性和强度都受到组成晶体的约束,从而限制了其可调性。在这里,我们将电介质图案的技术利用为一维静电超晶格(SL)的对象。我们观察到多个狄拉克锥的出现,并发现证据表明,随着SL电势的增加,主和卫星狄拉克锥被顺序扁平,沿与SL基载体平行的方向平坦。我们的结果表明,在高迁移率二维材料中诱导可调传输各向异性,一种长期以来的新型电子和光学应用的特性,以及一种用于工程扁平能带的新方法,其中电子电子相互作用可以导致新兴的特性。

Patterning graphene with a spatially-periodic potential provides a powerful means to modify its electronic properties. Dramatic effects have been demonstrated in twisted bilayers where coupling to the resulting moiré-superlattice yields an isolated flat band that hosts correlated many-body phases. However, both the symmetry and strength of the effective moiré potential are constrained by the constituent crystals, limiting its tunability. Here we exploit the technique of dielectric patterning to subject graphene to a one-dimensional electrostatic superlattice (SL). We observe the emergence of multiple Dirac cones and find evidence that with increasing SL potential the main and satellite Dirac cones are sequentially flattened in the direction parallel to the SL basis vector. Our results demonstrate the ability to induce tunable transport anisotropy in high mobility two-dimensional materials, a long-desired property for novel electronic and optical applications, as well as a new approach to engineering flat energy bands where electron-electron interactions can lead to emergent properties.

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