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Effect of electron correlation on the electronic structure and spin-lattice coupling of high- T_c cuprates: Quantum Monte Carlo calculations

机译:电子相关性对高T_c铜离子的电子结构和自旋-晶格耦合的影响:量子蒙特卡洛计算

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摘要

Electron correlation effects are particularly strong in high-temperature superconducting materials. Devising an accurate description of these materials has long been a challenge, with these strong correlation effects historically being considered impossible or impractical to simulate computationally. Using quantum Monte Carlo techniques, we have explicitly simulated electron correlations in several cuprate materials from first principles. These simulations accurately reproduce many important physical quantities of these materials, including the interaction-induced gap and superexchange coupling between copper spins, with no additional parameters beyond fundamental constants. We further investigate the dimensionless spin-lattice coupling parameter in the parent materials, showing that it varies dramatically, between 0.1 and 1.0, depending on the interlayer. This result indicates that the lattice and magnetic degrees of freedom are not independent in these systems, which may have ramifications for the origin of superconductivity.
机译:在高温超导材料中,电子相关效应特别强。设计这些材料的准确描述长期以来一直是一个挑战,因为从历史上看,这些强大的相关效应被认为是不可能的,或者在计算上不可行。使用量子蒙特卡洛技术,我们从第一原理就明确地模拟了几种铜酸盐材料中的电子相关性。这些模拟准确地重现了这些材料的许多重要物理量,包括相互作用引起的间隙和铜自旋之间的超交换耦合,没有基本常数以外的其他参数。我们进一步研究了母体材料中的无量纲自旋-晶格耦合参数,表明该参数在很大范围内变化,介于0.1和1.0之间,具体取决于中间层。该结果表明,在这些系统中晶格和磁自由度不是独立的,这可能会对超导性的起源产生影响。

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  • 来源
    《Physical review》 |2014年第12期|125129.1-125129.6|共6页
  • 作者单位

    Department of Physics, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801-3080, USA;

    Department of Physics, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801-3080, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    total energy and cohesive energy calculations;

    机译:总能量和内聚能计算;

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