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Spectroscopic signatures of many-body correlations in magic-angle twisted bilayer graphene

机译:魔法角扭曲双层石墨烯中多体相关的光谱特征

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摘要

The discovery of superconducting and insulating states in magi-cangle twisted bilayer graphene (MATBG)(1,2) has ignited considerable interest in understanding the nature of electronic interactions in this chemically pristine material. The transport properties of MATBG as a function of doping are similar to those of high-transition-temperature copper oxides and other unconventional superconductors(1-3), which suggests that MATBG may be a highly interacting system. However, to our knowledge, there is no direct experimental evidence of strong many-body correlations in MATBG. Here we present high-resolution spectroscopic measurements, obtained using a scanning tunnelling microscope, that provide such evidence as a function of carrier density. MATBG displays unusual spectroscopic characteristics that can be attributed to electron-electron interactions over a wide range of doping levels, including those at which superconductivity emerges in this system. We show that our measurements cannot be explained with a mean-field approach for modelling electron-electron interactions in MATBG. The breakdown of a mean-field approach when applied to other correlated superconductors, such as copper oxides, has long inspired the study of the highly correlated Hubbard model(3). We show that a phenomenological extended-Hubbard-model cluster calculation, which is motivated by the nearly localized nature of the relevant electronic states of MATBG, produces spectroscopic features that are similar to those that we observed experimentally. Our findings demonstrate the critical role of many-body correlations in understanding the properties of MATBG.
机译:在Magi-angle扭曲的双层石墨烯(MATBG)(1,2)中发现超导和绝缘状态的发现对理解该化学上原始材料中的电子相互作用的性质点燃了相当大的兴趣。 MATBG作为掺杂函数的MATBG的运输性质类似于高转化型铜氧化物和其他非传统超导体(1-3)的函数,这表明MATBG可以是高度相互作用的系统。然而,为了我们的知识,在Matbg中没有直接的实验证据。在这里,我们呈现使用扫描隧道显微镜获得的高分辨率光谱测量,其提供了作为载体密度的函数的诸如函数的证据。 MATBG显示出不寻常的光谱特性,可归因于各种掺杂水平上的电子 - 电子相互作用,包括该系统中出现超导电性的相互作用。我们表明我们的测量不能用用于在MATBG中建模电子 - 电子相互作用的平均场方法来解释。在应用于其他相关超导体(例如铜氧化物)的其他相关超导体(例如铜氧化物)中,长期激发了对高度相关的哈伯德型号(3)的研究。我们表明,由MATBG相关电子国家的几乎局部化性质的现象学扩展 - 霍巴德模型集群计算产生了类似于我们通过实验观察的光谱特征。我们的研究结果表明了许多身体相关性在理解MATBG的性质方面的关键作用。

著录项

  • 来源
    《Nature》 |2019年第7767期|101-105|共5页
  • 作者单位

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

    Princeton Univ Princeton Ctr Theoret Sci Princeton NJ 08544 USA;

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

    Natl Inst Mat Sci Tsukuba Ibaraki Japan;

    Princeton Univ Princeton Ctr Theoret Sci Princeton NJ 08544 USA|Natl Inst Mat Sci Tsukuba Ibaraki Japan;

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

    Princeton Univ Joseph Henry Labs Princeton NJ 08544 USA|Princeton Univ Dept Phys Princeton NJ 08544 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:15:20

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