Reflecting on the LK-99 fervour: insights and future prospects.

IF 2.3 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER Journal of Physics: Condensed Matter Pub Date : 2024-12-12 DOI:10.1088/1361-648X/ad9804
I V Sukhenko, V L Karbivskyy
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Abstract

A Copper-substituted lead apatite, named LK-99 by its authors, has recently emerged as a candidate for the world's first ambient-conditions superconductor, but has since not demonstrated the anticipated properties when subject to independent scrutiny. In this review we cover the experimental and theoretical studies that have been dedicated to this unusual material, while briefly discussing the original arXiv papers. So far, all the synthesis methods result in the formation of a multiphase material with unpredictable structure and unstable stoichiometry. This is a core reason why the studies discussed in the review yield different results when it comes to magnetic, electrophysical properties and even visual appearance of the material. DFT studies of the electronic structure of Pb9Cu(PO4)6O are reviewed and compared with our original calculations, and the limitations of the DFT approach are discussed. While reviewing theoretical publications on the matter, we bring forward the flat-band superconductivity model and discuss the nature of flat bands and their ability to sustain superconducting transport in the model material. The possibility of the compound being a Mott insulator, given the specifics of its electronic structure, as well as the role of doping, is highlighted. Finally, we raise the question of viability of achieving superconductivity in doped apatites beyond the LK-99 formula.

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反思 LK-99 热潮:见解与未来展望。
最近,一种被作者命名为 LK-99 的铜取代铅磷灰石成为世界上第一种环境条件下超导体的候选材料,但此后在接受独立审查时并未表现出预期的特性。在这篇综述中,我们将介绍针对这种不同寻常的材料所进行的实验和理论研究,同时简要讨论最初的 arXiv 论文。迄今为止,所有的合成方法都会形成一种结构难以预测、化学计量不稳定的多相材料。这也是综述中讨论的各项研究在材料的磁性、电物理性质甚至视觉 外观方面产生不同结果的核心原因。我们回顾了对 Pb9Cu(PO4)6O 电子结构的 DFT 研究,并将其与我们最初的计算结果进行了比较,还讨论了 DFT 方法的局限性。在回顾相关理论文献的同时,我们提出了平带超导模型,并讨论了平带的性质及其在模型材料中维持超导传输的能力。最后,我们提出了在掺杂磷灰石中实现超越 LK-99 公式的超导性的可行性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physics: Condensed Matter
Journal of Physics: Condensed Matter 物理-物理:凝聚态物理
CiteScore
5.30
自引率
7.40%
发文量
1288
审稿时长
2.1 months
期刊介绍: Journal of Physics: Condensed Matter covers the whole of condensed matter physics including soft condensed matter and nanostructures. Papers may report experimental, theoretical and simulation studies. Note that papers must contain fundamental condensed matter science: papers reporting methods of materials preparation or properties of materials without novel condensed matter content will not be accepted.
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