论文标题

部分可观测时空混沌系统的无模型预测

Evidence of a compensated semimetal with electronic correlations at the CNP of twisted double bilayer graphene

论文作者

Ghosh, Ayan, Chakraborty, Souvik, Ghorai, Unmesh, Paul, Arup Kumar, Watanabe, K., Taniguchi, T., Sensarma, Rajdeep, Das, Anindya

论文摘要

最近,魔法角扭曲的双层石墨烯(MATBLG)表明,在Moir'e超级晶格的相应填充物上,各种相互作用驱动的新型量子相的出现,而电荷中立点(CNP)仍然是Vanilla绝缘子。在这里,我们在扭曲的双双层石墨烯(TDBLG)的CNP上显示了一个几乎补偿的半金色的新兴阶段,该阶段是MATBLG的紧密表亲,具有电子相关性的签名。使用电气和热传输,我们在磁场中发现了几乎两个数量级增强的磁场,比极端量子限制小得多,并伴随着CNP的大磁力($ \ sim 2500 \%$)。这提供了无可争议的实验证据,表明CNP附近的TDBLG是补偿的半学。此外,在低温下,我们观察到了抗性的异常sublinear温度依赖性。最近的理论预测了CNP附近的激子金属的形成,CNP附近,小电子和孔口袋共存。我们了解该理论中的临界波动的均匀温度依赖性。

Recently, magic-angle twisted bilayer graphene (MATBLG) has shown the emergence of various interaction-driven novel quantum phases at the commensurate fillings of the moir'e superlattice, while the charge neutrality point (CNP) remains mostly a vanilla insulator. Here, we show an emerging phase of nearly compensated semimetallicity at the CNP of twisted double bilayer graphene (TDBLG), a close cousin of MATBLG, with signatures of electronic correlation. Using electrical and thermal transport, we find almost two orders of magnitude enhancement of the thermopower in magnetic fields much smaller than the extreme quantum limit, accompanied by a large magnetoresistance($\sim 2500\%$) at CNP. This provides indisputable experimental evidence that TDBLG near CNP is a compensated semimetal. Moreover, at low temperatures, we observe an unusual sublinear temperature dependence of resistance. A recent theory predicts the formation of an excitonic metal near CNP, where small electron and hole pockets coexist. We understand the sublinear temperature dependence in terms of critical fluctuations in this theory.

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