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Energetics of the complex phase diagram of a tunable bilayer graphene probed by quantum capacitance

机译:量子电容探测的可调谐双层石墨烯复合相图的能量学

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Bilayer graphene provides a unique platform to explore the rich physics in quantum Hall effect. The unusual combination of spin, valley, and orbital degeneracy leads to interesting symmetry-broken states with electric and magnetic field. Conventional transport measurements, like resistance measurements, have been performed to probe the different ordered states in bilayer graphene. However, not much work has been done to directly map the energetics of those states in bilayer graphene. Here, we have carried out the magnetocapacitance measurements with electric and magnetic field in a hexagonal boron nitride encapsulated dual-gated bilayer graphene device. At zero magnetic field, using the quantum capacitance technique we measure the gap around the charge neutrality point as a function of perpendicular electric field and the obtained value of the gap matches well with the theory. In the presence of a perpendicular magnetic field, we observe Landau-level crossing in our magnetocapacitance measurements with electric field. The gap closing and reopening of the lowest Landau level with electric and magnetic field shows the transition from one ordered state to another. Furthermore, we observe the collapsing of the Landau levels near the band edge at higher electric field ((D) over bar 0.5 Vm), which was predicted theoretically. The complete energetics of the Landau levels of bilayer graphene with electric and magnetic field in our experiment paves the way to unravel the nature of ground states of the system.
机译:双层石墨烯提供独特的平台,探索量子霍尔效应中的丰富物理。旋转,谷和轨道退化的不寻常组合导致有趣的对称破碎状态,具有电磁场。已经进行了传统的传输测量,如电阻测量,已经进行了探测双层石墨烯中的不同有序状态。但是,没有做出多大的工作,直接在双层石墨烯中直接映射这些国家的能量学。这里,我们在六边形氮化硼封装的双门控双层石墨烯装置中进行了用电和磁场的磁致涂布测量。在零磁场,使用量子电容技术,我们测量电荷中性点周围的间隙,作为垂直电场的函数,并且与理论相匹配的间隙的获得值良好。在存在垂直磁场的情况下,我们观察我们用电场的磁致码度测量中的Landau级交叉。具有电磁场的最低Landau水平的间隙关闭和重新开放,显示了从一个有序状态到另一个状态的过渡。此外,我们观察到在理论上预测的较高电场((d)上的带边缘附近的LANDAU水平((d))。我们的实验中的Bilayer Graphene的Landau水平的完整能量学铺平了揭开了系统地面状态的途径。

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