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Disorder-induced broadening of the spin waves in the triangular-lattice quantum spin liquid candidate YbZnGaO4

Authors :
Zhen Ma
Zhao-Yang Dong
Jinghui Wang
Shuhan Zheng
Kejing Ran
Song Bao
Zhengwei Cai
Yanyan Shangguan
Wei Wang
M. Boehm
P. Steffens
L.-P. Regnault
Xiao Wang
Yixi Su
Shun-Li Yu
Jun-Ming Liu
Jian-Xin Li
Jinsheng Wen
Source :
Physical review / B 104(22), 224433 (2021). doi:10.1103/PhysRevB.104.224433
Publication Year :
2021
Publisher :
American Physical Society (APS), 2021.

Abstract

Disorder is important in the study of quantum spin liquids, but its role on the spin dynamics remains elusive. Here, we explore the disorder effect by investigating the magnetic-field dependence of the low-energy magnetic excitations in a triangular-lattice frustrated magnet YbZnGaO$_4$ with inelastic neutron scattering. With an intermediate field of 2.5 T applied along the $c$-axis, the broad continuum at zero field becomes more smeared both in energy and momentum. With a field up to 10 T, which fully polarizes the magnetic moments, we observe clear spin-wave excitations with a gap of $\sim$1.4 meV comparable to the bandwidth. However, the spectra are significantly broadened. The excitation spectra both at zero and high fields can be reproduced by performing classical Monte Carlo simulations which take into account the disorder effect arising from the random site mixing of nonmagnetic Zn$^{2+}$ and Ga$^{3+}$ ions. These results elucidate the critical role of disorder in broadening the magnetic excitation spectra and mimicking the spin-liquid features in frustrated quantum magnets.<br />Comment: Published in PRB, 10 pages, 3 figures

Details

ISSN :
24699969 and 24699950
Volume :
104
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi.dedup.....6db17a906010dba295bb59c1ff8b0318