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铜掺杂铅磷灰石平带中从非费米液体到电荷转移莫特绝缘体的转变

Non-Fermi liquid to charge-transfer Mott insulator in flat bands of copper-doped lead apatite.

作者信息

Kim Sun-Woo, Haule Kristjan, Pascut Gheorghe Lucian, Monserrat Bartomeu

机构信息

Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge CB3 0FS, UK.

Center for Materials Theory, Department of Physics & Astronomy, Rutgers University, Piscataway, NJ O8854, USA.

出版信息

Mater Horiz. 2024 Nov 11;11(22):5622-5630. doi: 10.1039/d4mh00971a.

Abstract

Copper-doped lead apatite, called LK-99, was initially claimed to be a room temperature superconductor driven by flat electron bands, but was later found to be a wide gap insulator. Despite the lack of room temperature superconductivity, there is growing evidence that LK-99 and related compounds host various strong electron correlation phenomena arising from their flat electron bands. Depending on the copper doping site and crystal structure, LK-99 can exhibit two distinct flat bands crossing the Fermi level in the non-interacting limit: either a single or two entangled flat bands. We explore potential correlated metallic and insulating phases in the flat bands of LK-99 compounds by constructing their correlation phase diagrams, and find both non-Fermi liquid and Mott insulating states. We demonstrate that LK-99 is a charge-transfer Mott insulator driven by strong electron correlations, regardless of the flat band type. We also find that the non-Fermi liquid state in the multi-flat band system exhibits strange metal behaviour, while the corresponding state in the single flat band system exhibits pseudogap behaviour. Our findings align with available experimental observations and provide crucial insights into the correlation phenomenology of LK-99 and related compounds that could arise independently of superconductivity. Overall, our research highlights that LK-99 and related compounds offer a compelling platform for investigating correlation physics in flat band systems.

摘要

铜掺杂的铅磷灰石,称为LK - 99,最初被宣称是一种由扁平电子能带驱动的室温超导体,但后来被发现是一种宽带隙绝缘体。尽管缺乏室温超导性,但越来越多的证据表明,LK - 99及相关化合物存在各种由其扁平电子能带引起的强电子关联现象。根据铜的掺杂位点和晶体结构,LK - 99在非相互作用极限下可以表现出两个穿过费米能级的不同扁平能带:要么是单个扁平能带,要么是两个纠缠的扁平能带。我们通过构建LK - 99化合物的关联相图,探索其扁平能带中潜在的关联金属相和绝缘相,并发现了非费米液体和莫特绝缘态。我们证明,无论扁平能带类型如何,LK - 99都是一种由强电子关联驱动的电荷转移莫特绝缘体。我们还发现,多扁平能带系统中的非费米液体态表现出奇异金属行为,而单扁平能带系统中的相应态表现出赝能隙行为。我们的发现与现有的实验观察结果一致,并为LK - 99及相关化合物的关联现象学提供了关键见解,这些现象可能独立于超导性而出现。总体而言,我们的研究强调,LK - 99及相关化合物为研究扁平能带系统中的关联物理提供了一个引人注目的平台。

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