论文标题

通用相互作用的量子大厅方案中电荷中性石墨烯的全局相图

Global phase diagram of charge neutral graphene in the quantum Hall regime for generic interactions

论文作者

De, Suman Jyoti, Das, Ankur, Rao, Sumathi, Kaul, Ribhu K., Murthy, Ganpathy

论文摘要

量化磁场中的电荷中立性的单层石墨烯是量子霍尔铁磁铁。由于旋转和山谷(接近)脱落,因此存在许多可能的基态状态。以前的理论工作是基于对对称性允许相互作用的严格的超短距离假设,可以预测一个相图,其具有自旋极化的,倾斜的抗抗铁磁性,valley Inter-Valley相干和电荷密度波浪的不同区域。虽然早期实验表明该系统处于垂直场的倾斜抗铁磁阶段,但最近的扫描隧道研究普遍发现了Kekulé键顺序,有时还会收取密度波浪顺序。最近,发现,如果人们放松上述严格的假设,则存在具有与真实样品相对应的相位图的区域中,具有共存的倾斜抗磁性和kekulé顺序。在这项工作中,从适用于实验的连续限制开始,我们使用通用对称性允许的相互作用介绍了$ν= 0 $ graphene的完整相图,假设翻译不变的接地状态最高为interstalley cooherence。为了发挥sublattice潜力(山谷Zeeman耦合),我们发现了许多具有不同类型共存顺序的阶段。我们以讨论各个州的身体签名进行了讨论。

Monolayer graphene at charge neutrality in a quantizing magnetic field is a quantum Hall ferromagnet. Due to the spin and valley (near) degeneracies, there is a plethora of possible ground states. Previous theoretical work, based on a stringent ultra short-range assumption on the symmetry-allowed interactions, predicts a phase diagram with distinct regions of spin-polarized, canted antiferromagnetic, inter-valley coherent, and charge density wave order. While early experiments suggested that the system was in the canted antiferromagnetic phase at a perpendicular field, recent scanning tunneling studies universally find Kekulé bond order, and sometimes also charge density wave order. Recently, it was found that if one relaxes the stringent assumption mentioned above, a phase with coexisting canted antiferromagnetic and Kekulé order exists in the region of the phase diagram believed to correspond to real samples. In this work, starting from the continuum limit appropriate for experiments, we present the complete phase diagram of $ν=0$ graphene in the Hartree-Fock approximation, using generic symmetry-allowed interactions, assuming translation invariant ground states up to an intervalley coherence. Allowing for a sublattice potential (valley Zeeman coupling), we find numerous phases with different types of coexisting order. We conclude with a discussion of the physical signatures of the various states.

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