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在奇异金属铜酸盐中测量并使用半全息术建模的节点自能的动量依赖标度指数。

Momentum-dependent scaling exponents of nodal self-energies measured in strange metal cuprates and modelled using semi-holography.

作者信息

Smit S, Mauri E, Bawden L, Heringa F, Gerritsen F, van Heumen E, Huang Y K, Kondo T, Takeuchi T, Hussey N E, Allan M, Kim T K, Cacho C, Krikun A, Schalm K, Stoof H T C, Golden M S

机构信息

Van der Waals - Zeeman Institute, Institute of Physics, University of Amsterdam, Sciencepark 904, 1098 XH, Amsterdam, The Netherlands.

Institute for Theoretical Physics and Center for Extreme Matter and Emergent Phenomena, Utrecht University, Utrecht, The Netherlands.

出版信息

Nat Commun. 2024 May 29;15(1):4581. doi: 10.1038/s41467-024-48594-6.

Abstract

The anomalous strange metal phase found in high-T cuprates does not follow the conventional condensed-matter principles enshrined in the Fermi liquid and presents a great challenge for theory. Highly precise experimental determination of the electronic self-energy can provide a test bed for theoretical models of strange metals, and angle-resolved photoemission can provide this as a function of frequency, momentum, temperature and doping. Here we show that constant energy cuts through the nodal spectral function in (Pb,Bi)SrLaCuO have a non-Lorentzian lineshape, consistent with a self-energy that is k dependent. This provides a new test for aspiring theories. Here we show that the experimental data are captured remarkably well by a power law with a k-dependent scaling exponent smoothly evolving with doping, a description that emerges naturally from anti-de Sitter/conformal-field-theory based semi-holography. This puts a spotlight on holographic methods for the quantitative modelling of strongly interacting quantum materials like the cuprate strange metals.

摘要

在高温铜酸盐中发现的反常奇异金属相并不遵循费米液体中所体现的传统凝聚态物理原理,这给理论带来了巨大挑战。对电子自能进行高度精确的实验测定可为奇异金属的理论模型提供一个试验平台,而角分辨光电子能谱可以给出作为频率、动量、温度和掺杂函数的自能。在此我们表明,在(Pb,Bi)SrLaCuO中穿过节点谱函数的等能切面具有非洛伦兹线形,这与依赖于动量k的自能一致。这为有抱负的理论提供了一个新的检验。在此我们表明,实验数据能被一个幂律很好地捕捉,该幂律具有一个随掺杂平滑演变的依赖于动量k的标度指数,这种描述自然地源于基于反德西特/共形场论的半全息方法。这使得全息方法成为定量模拟像铜酸盐奇异金属这样的强相互作用量子材料的焦点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54f6/11522462/6865c0626ba7/41467_2024_48594_Fig1_HTML.jpg

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