arrow
Return

Superconductivity due to fluctuating loop currents

delete2024-06-14
delete1
delete
OA
AI
G
Grgur Palle *
R
Risto Ojajärvi
R
Rafael M. Fernandes
J
Jörg Schmalian
DOI:10.1126/sciadv.adn3662delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Orbital magnetism and the loop currents (LCs) that accompany it have been proposed to emerge in many systems, including cuprates, iridates, and kagome superconductors. In the case of cuprates, LCs have been put forward as the driving force behind the pseudogap, strange-metal behavior, and d(x)(2)-y(2) -wave superconductivity. Here, we investigate whether fluctuating intra-unit-cell LCs can cause unconventional superconductivity. For odd-parity LCs, we find that they are repulsive in all pairing channels near the underlying quantum-critical point (QCP). For even-parity LCs, their fluctuations give rise to unconventional pairing, which is not amplified in the vicinity of the QCP, in sharp contrast to pairing mediated by spin-magnetic, nematic, or ferroelectric fluctuations. Applying our formalism to the cuprates, we conclude that fluctuating intra-unit-cell LCs are unlikely to yield d(x)(2)-y(2) -wave superconductivity. If LCs are to be relevant for the cuprates, they must break translation symmetry.
Keywords:
CHARGE-TRANSFER
ORDER
STATES
PHASE
MODEL
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Science Advances cover
Science Advances
IF:
12.5
Papers:
2.0W
Citations:
18.1W

Organization

K
karlsruhe institute of technology
Scholars:
2.0W
Papers: 1.4W
Citations: 23
H
Helmholtz Association
Scholars:
13.2W
Papers: 10.7W
Citations: 145