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Pseudogap in electron-doped cuprates as a thermal precursor to magnetism

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Abstract

We study pseudogap behavior in a metal near an antiferromagnetic instability and apply the results to electron-doped cuprates. We associate pseudogap behavior with thermal magnetic fluctuations and compute the fermionic self-energy along the Fermi surface in a weak pseudogap regime, which we justify. We analyze the spectral function as a function of frequency (energy distribution curves, EDC) and momentum (momentum distribution curves, MDC). We show that the EDC display pseudogap behavior with peaks at a finite frequency at all momenta. On the other hand, MDC peaks disperse within the pseudogap, ending at a gossamer Fermi surface. We analyze magnetically-mediated superconductivity and show that in a weak pseudogap regime thermal fluctuations almost cancel out in the gap equation. We favorably compare our results with recent ARPES studies.

Original languageEnglish (US)
Article number1075
JournalNature communications
Volume17
Issue number1
DOIs
StatePublished - Dec 2026

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© The Author(s) 2025.

PubMed: MeSH publication types

  • Journal Article

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