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铜氧化物超导体电荷序的共振X射线散射研究进展

陈萤 闫裕杰 武岳彤 王奇思

物理学报2025,Vol.74Issue(8):207-228,22.
物理学报2025,Vol.74Issue(8):207-228,22.DOI:10.7498/aps.74.20241402

铜氧化物超导体电荷序的共振X射线散射研究进展

Research progress of resonant X-ray scattering of charge order in cuprate superconductors

陈萤 1闫裕杰 1武岳彤 1王奇思1

作者信息

  • 1. 香港中文大学物理系,香港 999077
  • 折叠

摘要

Abstract

Unconventional superconductivity often competes or coexists with a variety of complex material states.In cuprate superconductors,there exist states including spin order,charge order,the pseudogap state,and the strange metal phase.A comprehensive understanding of their relationship is fundamental to establishing the mechanism of high-temperature superconductivity.Spin dynamics in cuprates has been extensively investigated using inelastic neutron scattering,but charge correlations remain far less understood.The latest development of resonant X-ray scattering(RXS)has been able to detect charge correlations with unprecedented sensitivity.A series of RXS studies have revealed that there universally exist the charge correlations in cuprate materials,which covers a wide range of the phase diagram.Resonant inelastic X-ray scattering(RIXS)experiments further show the dynamical behaviors of charge order.These findings highlight the important influence of charge correlations on the properties of cuprates.In this paper,we review the latest research progress in the charge order in cuprates by using RXS,with a particular emphasis on RIXS experiments.Our focus is placed on recent works on dynamical charge correlations at high temperatures as well as uniaxial strain tuning of charge order.We discuss topics including the underlying interactions,microscopic structure and symmetries,and the possible influence of charge order on both the superconducting and normal states.

关键词

铜氧化物/高温超导/电荷序/共振X射线散射

Key words

cuprates/high-temperature superconductivity/charge order/resonant X-ray scattering

引用本文复制引用

陈萤,闫裕杰,武岳彤,王奇思..铜氧化物超导体电荷序的共振X射线散射研究进展[J].物理学报,2025,74(8):207-228,22.

基金项目

香港特别行政区研究拨款委员会(批准号:ECS 24306223)资助的课题. Project supported by the Research Grants Council of Hong Kong,China(Grant No.ECS 24306223). (批准号:ECS 24306223)

物理学报

OA北大核心

1000-3290

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