论文标题
石墨烯/HBN超级晶格中的单载波运输
Single-Carrier Transport in Graphene/hBN Superlattices
论文作者
论文摘要
石墨烯/六角硼硝酸盐(HBN)Moiré超级晶格吸引了用于研究多体效应和分形物理学的兴趣。在此类超晶格中,已经对许多外来的运输特性进行了深入研究,但以前的研究并未集中在单载体运输上。在这些超晶格中对单载体行为的研究将导致对单粒子/相关现象的过渡的理解。在这里,我们在高品质的双层石墨烯/HBN超级晶格量子点设备中显示了单载波传输。我们在电荷中立点(CNP)和孔侧卫星点附近的能量范围内显示了显着的设备可控性。在垂直的磁场下,库仑振荡在CNP附近消失,这可能是库仑封锁和量子大厅方案之间交叉的标志。我们的结果为探索单电子传输和分形量子大厅效应与二维量子材料中相关现象的关系铺平了道路。
Graphene/hexagonal boron nitride (hBN) moiré superlattices have attracted interest for use in the study of many-body effects and fractal physics in Dirac fermion systems. Many exotic transport properties have been intensively examined in such superlattices, but previous studies have not focused on single-carrier transport. The investigation of the single-carrier behavior in these superlattices would lead to an understanding of the transition of single-particle/correlated phenomena. Here, we show the single-carrier transport in a high-quality bilayer graphene/hBN superlattice-based quantum dot device. We demonstrate remarkable device controllability in the energy range near the charge neutrality point (CNP) and the hole-side satellite point. Under a perpendicular magnetic field, Coulomb oscillations disappear near the CNP, which could be a signature of the crossover between Coulomb blockade and quantum Hall regimes. Our results pave the way for exploring the relationship of single-electron transport and fractal quantum Hall effects with correlated phenomena in two-dimensional quantum materials.