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Beyond on-site Hubbard interaction in charge dynamics of cuprate superconductors

delete2026-02-01
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H
Hiroyuki Yamase *
DOI:10.1080/00018732.2026.2618329delete
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Abstract

Abstract

En 中文
The study of high-temperature cuprate superconductors has long been dominated by models that primarily focus on short-range electron-electron interactions, such as the two-dimensional Hubbard and t-J models. However, new insights into the charge dynamics reveal the indispensable and often overlooked role of the long-range Coulomb interaction, a factor critically important due to the layered structure of these materials. In this review, we first present compelling evidence from resonant inelastic x-ray scattering data that highlights the significance of the long-range Coulomb interaction in cuprate charge dynamics, particularly around the in-plane momentum q∥=(0,0). We show that these experimental observations are well-captured by the layered t-J-V model, which extends the standard t-J framework to include the long-range Coulomb interaction V and the layered structure. This new perspective elucidates how charge dynamics renormalizes one-particle excitation properties, leading to several profound and often counterintuitive consequences. We demonstrate that the electron dispersion does not exhibit a sharp kink, and Landau quasiparticles persist in the low-energy limit despite a significant suppression of their spectral weight. We further show that while charge fluctuations alone cannot fully account for the pseudogap, they are a crucial component for understanding its formation. Additionally, we reveal that optical plasmon excitations generate fermionic quasiparticles, known as plasmarons, which give rise to a distinct, incoherent replica band. We argue that accurately describing these plasmonic effects requires a three-dimensional theoretical approach. This perspective on plasmon excitations may offer a critically new clue to a long-standing puzzle: why multi-layer cuprate superconductors, containing more than two CuO 2 layers per unit cell, consistently exhibit a higher critical temperature Tc than their single-layer counterparts. Finally, we review the spin-fluctuation mechanism of superconductivity suffers from the self-restraint effect and show how important the screened Coulomb interaction is in the spin-fluctuation mechanism to realize high- Tc superconductivity.
Keywords:
long-range Coulomb interaction
charge dynamics
electron self-energy
pseudogap
Coulomb screening
superconductivity

Journal

Advances in Physics cover
Advances in Physics
IF:
13.8
Papers:
546
Citations:
6.3K

Organization

N
National Institute for Materials Science
Scholars:
602
Papers: 287
Citations: 2.2W
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