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research article

Magnon interactions in a moderately correlated Mott insulator

Wang, Qisi
•
Mustafi, S.
•
Fogh, E.  
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December 1, 2024
Nature Communications

Quantum fluctuations in low-dimensional systems and near quantum phase transitions have significant influences on material properties. Yet, it is difficult to experimentally gauge the strength and importance of quantum fluctuations. Here we provide a resonant inelastic x-ray scattering study of magnon excitations in Mott insulating cuprates. From the thin film of SrCuO2, single- and bi-magnon dispersions are derived. Using an effective Heisenberg Hamiltonian generated from the Hubbard model, we show that the single-magnon dispersion is only described satisfactorily when including significant quantum corrections stemming from magnon-magnon interactions. Comparative results on La2CuO4 indicate that quantum fluctuations are much stronger in SrCuO2 suggesting closer proximity to a magnetic quantum critical point. Monte Carlo calculations reveal that other magnetic orders may compete with the antiferromagnetic Néel order as the ground state. Our results indicate that SrCuO2—due to strong quantum fluctuations—is a unique starting point for the exploration of novel magnetic ground states.

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Type
research article
DOI
10.1038/s41467-024-49714-y
Scopus ID

2-s2.0-85196736567

PubMed ID

38914556

Author(s)
Wang, Qisi
•
Mustafi, S.
•
Fogh, E.  
•
Astrakhantsev, N.
•
He, Z.
•
Biało, I.
•
Chan, Ying
•
Martinelli, L.
•
Horio, M.
•
Ivashko, O.
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Date Issued

2024-12-01

Publisher

Nature Research

Published in
Nature Communications
Volume

15

Issue

1

Article Number

5348

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LQM  
FunderFunding(s)Grant NumberGrant URL

Swiss Government Excellence Scholarship

2022.0001,2023.0052

ESS-Lighthouse

Danish National Council for Research Infrastructure

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Available on Infoscience
January 21, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/243138
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