论文标题
在扭曲的氮化硼基板上,在石墨烯单层中超级晶格狄拉克锥的传输证据
Transport evidence of superlattice Dirac cones in graphene monolayer on twisted boron nitride substrate
论文作者
论文摘要
可以通过引入Moiré超级晶格来实现二维(2D)材料中的强大带工程,从而导致各种新型量子相的出现,并有望实现未来的应用潜力。提出的创建Moiré模式的作品集中在嵌入的内部通道材料或通道和基板之间的扭曲。但是,底物材料内部扭曲对未对准通道材料的影响越来越少。在这项工作中,我们报告了超晶格多迪拉克锥的实现,并在〜0.14°扭曲的双层硝酸硼(TBN)底物上与单层石墨烯(MLG)中主狄拉克锥共存。运输测量表明,原始狄拉克锥周围的三对超晶格狄拉克点出现,具有多个金属或绝缘状态,这些状态周围是电荷中立点(CNP)。位移场可调和电子孔不对称的费米速度与温度相关的测量以及超晶格狄拉克锥的无间隙分散体表示。 MLG/TBN异质结构中多个Dirac锥的实验观察得到了使用定期Moiré电位的带结构计算。我们的结果揭示了将扭曲的底物用作通用带工程技术的2D材料的潜力,无论晶格匹配和晶体方向如何,这可能为Twistronics的新分支铺平道路。
Strong band engineering in two-dimensional (2D) materials can be achieved by introducing moiré superlattices, leading to the emergence of various novel quantum phases with promising potential for future applications. Presented works to create moiré patterns have been focused on a twist embedded inside channel materials or between channel and substrate. However, the effects of a twist inside the substrate materials on the unaligned channel materials are much less explored. In this work, we report the realization of superlattice multi-Dirac cones with the coexistence of the main Dirac cone in a monolayer graphene (MLG) on a ~0.14° twisted double-layer boron nitride (tBN) substrate. Transport measurements reveal the emergence of three pairs of superlattice Dirac points around the pristine Dirac cone, featuring multiple metallic or insulating states surrounding the charge neutrality point (CNP). Displacement field tunable and electron-hole asymmetric Fermi velocities are indicated from temperature dependent measurements, along with the gapless dispersion of superlattice Dirac cones. The experimental observation of multiple Dirac cones in MLG/tBN heterostructure is supported by band structure calculations employing periodic moiré potential. Our results unveil the potential of using twisted substrate as a universal band engineering technique for 2D materials regardless of lattice matching and crystal orientations, which might pave the way for a new branch of twistronics.