Back to Search Start Over

Proximate Quantum Spin Liquid on Designer Lattice

Authors :
David Vanderbilt
Padraic Shafer
Jess H. Brewer
Victor Drouin-Touchette
Xiaoran Liu
Mikhail Kareev
Jak Chakhalian
P. S. Anil Kumar
Elke Arenholz
Sobhit Singh
Srimanta Middey
John W. Freeland
Lin Gu
Banabir Pal
Qinghua Zhang
D. D. Sarma
Lu Li
Yanwei Cao
Tomoya Asaba
Source :
Nano letters. 21(5)
Publication Year :
2021

Abstract

Complementary to bulk synthesis, here we propose a designer lattice with extremely high magnetic frustration and demonstrate the possible realization of a quantum spin liquid state from both experiments and theoretical calculations. In an ultrathin (111) CoCr2O4 slice composed of three triangular and one kagome cation planes, the absence of a spin ordering or freezing transition is demonstrated down to 0.03 K, in the presence of strong antiferromagnetic correlations in the energy scale of 30 K between Co and Cr sublattices, leading to the frustration factor of ∼1000. Persisting spin fluctuations are observed at low temperatures via low-energy muon spin relaxation. Our calculations further demonstrate the emergence of highly degenerate magnetic ground states at the 0 K limit, due to the competition among multiply altered exchange interactions. These results collectively indicate the realization of a proximate quantum spin liquid state on the synthetic lattice.

Details

ISSN :
15306992
Volume :
21
Issue :
5
Database :
OpenAIRE
Journal :
Nano letters
Accession number :
edsair.doi.dedup.....3332f2a94a41a385d9c0c4805f232c38