Key Properties of La2CuO4 and YBa2Cu3O6 – Specific Type of Chemical Bonding and Lenear Magnetoelectric Effect, Promoting the Emergence of Superconductivity in Unconventional High-Temperature Superconductors

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, APPLIED Journal of Superconductivity and Novel Magnetism Pub Date : 2025-01-18 DOI:10.1007/s10948-025-06907-w
Valery G. Orlov, Gregory S. Sergeev
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Abstract

Two principal physical properties of La2CuO4 and YBa2Cu3O6 are identified, which can promote the emergence of superconductivity in unconventional high-temperature superconductors. The first property is a specific type of chemical bonding stimulating fluctuations of the charge density. To reveal it, it is necessary to carry out calculations of the electronic band structure and find the parameters of critical points in the charge density distribution in the crystal. For calculation of the electronic band structure of YBa2Cu3O6 the same approach was applied, which we earlier used for the study of the electronic band structure of La2CuO4 and high-temperature superconductors: computer program WIEN2k and exchange potential of Becke and Johnston modified by Tran and Blaha. Such approach allowed us to obtain the antiferromagnetic ground state for the compound YBa2Cu3O6 with a band gap Eg = 1.5 eV and a magnetic moment on copper atoms MCu = 0.71 μB. It turned out that YBa2Cu3O6 compound has a type of chemical bonding similar to that which we found earlier in La2CuO4 and in high-temperature superconductors. Consideration of the symmetry properties of the crystal structures of the La2CuO4 and YBa2Cu3O6 compounds revealed a second characteristic property of them – the existence of magnetic crystal classes that admit a linear magnetoelectric effect. This effect allows the simultaneous existence of local magnetic fields and electric polarization in the sample. Based on two identified characteristic physical properties of the La2CuO4 and YBa2Cu3O6 compounds, a roadmap is proposed for a search of new parent substances for obtaining unconventional high-temperature superconductors.

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La2CuO4和YBa2Cu3O6的关键性质——特定类型化学键和线性磁电效应,促进非常规高温超导体中超导性的出现
确定了La2CuO4和YBa2Cu3O6的两个主要物理性质,它们可以促进非常规高温超导体中超导性的出现。第一个性质是一种特殊类型的化学键刺激电荷密度的波动。为了揭示这一点,有必要进行电子能带结构的计算,并找到晶体中电荷密度分布的临界点参数。对于YBa2Cu3O6的电子能带结构的计算,我们采用了与我们之前用于La2CuO4和高温超导体电子能带结构研究相同的方法:计算机程序WIEN2k和Tran和Blaha修改的Becke和Johnston的交换势。这种方法使我们获得了带隙Eg = 1.5 eV、铜原子磁矩MCu = 0.71 μB的化合物YBa2Cu3O6的反铁磁基态。结果表明,YBa2Cu3O6化合物有一种化学键,类似于我们之前在La2CuO4和高温超导体中发现的化学键。考虑La2CuO4和YBa2Cu3O6化合物晶体结构的对称性,揭示了它们的第二个特征性质——承认线性磁电效应的磁晶类的存在。这种效应允许在样品中同时存在局部磁场和电极化。基于La2CuO4和YBa2Cu3O6化合物的两种特征物理性质,提出了寻找新的母物质以获得非常规高温超导体的路线图。
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来源期刊
Journal of Superconductivity and Novel Magnetism
Journal of Superconductivity and Novel Magnetism 物理-物理:凝聚态物理
CiteScore
3.70
自引率
11.10%
发文量
342
审稿时长
3.5 months
期刊介绍: The Journal of Superconductivity and Novel Magnetism serves as the international forum for the most current research and ideas in these fields. This highly acclaimed journal publishes peer-reviewed original papers, conference proceedings and invited review articles that examine all aspects of the science and technology of superconductivity, including new materials, new mechanisms, basic and technological properties, new phenomena, and small- and large-scale applications. Novel magnetism, which is expanding rapidly, is also featured in the journal. The journal focuses on such areas as spintronics, magnetic semiconductors, properties of magnetic multilayers, magnetoresistive materials and structures, magnetic oxides, etc. Novel superconducting and magnetic materials are complex compounds, and the journal publishes articles related to all aspects their study, such as sample preparation, spectroscopy and transport properties as well as various applications.
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