论文标题

WSE2上扭曲的双层石墨烯中可延展带的旋转轨道耦合增强山谷订购

Spin-orbit coupling-enhanced valley ordering of malleable bands in twisted bilayer graphene on WSe2

论文作者

Bhowmik, Saisab, Ghawri, Bhaskar, Park, Youngju, Lee, Dongkyu, Datta, Suvronil, Soni, Radhika, Watanabe, K., Taniguchi, T., Ghosh, Arindam, Jung, Jeil, Chandni, U.

论文摘要

物质的新阶段可以通过状态的不同电子密度,强相互作用和自旋轨道耦合的组合来稳定。由于相互作用驱动的旋转 - 瓦利风味极化,最近在魔法角扭曲的双层石墨烯(TBG)中进行了大量新阶段的实验。在这项工作中,我们探讨了由于旋转耦合耦合增强的山谷极化的综合效应以及莫伊尔带($ν\ lyssim 2 $)在TBG中与TBG耦合到Tungsten diselenide中的Moiré频段的相关阶段。我们观察到异常的大厅效应,并伴随着一系列的LifShitz跃迁,它们具有高度可调的载体密度和磁场。引人注目的是,磁化表现出半填充附近的突然变化,证实了其轨道性质。报道的强制场比以前的基于石墨烯的Moiré系统中的研究高几个数量级,大概是由货架带中的范霍夫奇异性偏爱的石膏不稳定性的帮助。虽然在零磁场上未对大厅电阻进行量化,但在有限磁场上观察到具有部分山谷极化的基态,完美的量化和完整的山谷极化。我们的发现表明,在旋转轨道耦合的情况下,平坦带中的奇异性也可以稳定有序阶段,即使在非整数Moiré乐队填充物上也可以稳定。

New phases of matter can be stabilized by a combination of diverging electronic density of states, strong interactions, and spin-orbit coupling. Recent experiments in magic-angle twisted bilayer graphene (TBG) have uncovered a wealth of novel phases as a result of interaction-driven spin-valley flavour polarization. In this work, we explore correlated phases appearing due to the combined effect of spin-orbit coupling-enhanced valley polarization and large density of states below half filling ($ν\lesssim 2$) of the moiré band in a TBG coupled to tungsten diselenide. We observe anomalous Hall effect, accompanied by a series of Lifshitz transitions, that are highly tunable with carrier density and magnetic field. Strikingly, the magnetization shows an abrupt sign change in the vicinity of half-filling, confirming its orbital nature. The coercive fields reported are about an order of magnitude higher than previous studies in graphene-based moiré systems, presumably aided by a Stoner instability favoured by the van Hove singularities in the malleable bands. While the Hall resistance is not quantized at zero magnetic fields, indicative of a ground state with partial valley polarization, perfect quantization and complete valley polarization are observed at finite fields. Our findings illustrate that singularities in the flat bands in the presence of spin-orbit coupling can stabilize ordered phases even at non-integer moiré band fillings.

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