魔角扭曲双层石墨烯中涌现局部矩的热能探针

IF 17.6 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Ayan Ghosh, Souvik Chakraborty, Ranit Dutta, Adhip Agarwala, K. Watanabe, T. Taniguchi, Sumilan Banerjee, Nandini Trivedi, Subroto Mukerjee, Anindya Das
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引用次数: 0

摘要

最近在魔角扭曲双层石墨烯上的实验表明,形成了平坦带,这表明电子相关效应可能在这种材料中占主导地位。然而,全球输运测量显示出强相关性的明显特征——比如由平坦带产生的局部矩——是缺失的。在这里,我们通过它们对从热功率测量中提取的熵的影响来证明紧急局部矩的存在。除了狄拉克点的热功率和满填充的平面带的符号变化外,我们还观察到在四分之一填充的带附近的符号变化,这些带在5 K到60 K之间不随温度变化。这与我们在扭曲双层石墨烯器件的研究中看到的温度依赖交叉点形成对比,其相关性较弱。此外,我们发现施加磁场会降低热功率,这与在部分自旋极化下层状氧化物中观察到的自旋熵抑制一致。无论是强大的交叉点还是磁场的抑制都不能仅仅用带费米子的贡献来解释;相反,我们的数据表明,一个主要的贡献来自于强相关平带的突现局部矩的熵。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermopower probes of emergent local moments in magic-angle twisted bilayer graphene

Thermopower probes of emergent local moments in magic-angle twisted bilayer graphene

Recent experiments on magic-angle twisted bilayer graphene have shown the formation of flat bands, suggesting that electronic correlation effects are likely to dominate in this material. However, a global transport measurement showing distinct signatures of strong correlations—such as local moments arising from the flat bands—is missing. Here we demonstrate the presence of emergent local moments through their impact on entropy extracted from thermopower measurements. In addition to sign changes in the thermopower at the Dirac point and full filling of the flat bands, we observe sign changes near the quarter-filled bands that do not vary with temperature from 5 K to 60 K. This is in contrast to temperature-dependent crossing points seen in our study on twisted bilayer graphene devices with weaker correlations. Furthermore, we find that applying a magnetic field reduces the thermopower, consistent with spin entropy suppression observed in layered oxides under partial spin polarization. Neither the robust crossing points nor the suppression by a magnetic field can be explained solely from the contributions of band fermions; instead, our data suggest a dominant contribution coming from the entropy of the emergent localized moments of a strongly correlated flat band.

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来源期刊
Nature Physics
Nature Physics 物理-物理:综合
CiteScore
30.40
自引率
2.00%
发文量
349
审稿时长
4-8 weeks
期刊介绍: Nature Physics is dedicated to publishing top-tier original research in physics with a fair and rigorous review process. It provides high visibility and access to a broad readership, maintaining high standards in copy editing and production, ensuring rapid publication, and maintaining independence from academic societies and other vested interests. The journal presents two main research paper formats: Letters and Articles. Alongside primary research, Nature Physics serves as a central source for valuable information within the physics community through Review Articles, News & Views, Research Highlights covering crucial developments across the physics literature, Commentaries, Book Reviews, and Correspondence.
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