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Line-Graph Approach to Spiral Spin Liquids

Authors :
Shang Gao
Ganesh Pokharel
Andrew F. May
Joseph A. M. Paddison
Chris Pasco
Yaohua Liu
Keith M. Taddei
Stuart Calder
David G. Mandrus
Matthew B. Stone
Andrew D. Christianson
Source :
Physical Review Letters. 129
Publication Year :
2022
Publisher :
American Physical Society (APS), 2022.

Abstract

Competition among exchange interactions is able to induce novel spin correlations on a bipartite lattice without geometrical frustration. A prototype example is the spiral spin liquid, which is a correlated paramagnetic state characterized by sub-dimensional degenerate propagation vectors. Here, using spectral graph theory, we show that spiral spin liquids on a bipartite lattice can be approximated by a further-neighbor model on the corresponding line-graph lattice that is non-bipartite, thus broadening the space of candidate materials that may support the spiral spin liquid phases. As illustrations, we examine neutron scattering experiments performed on two spinel compounds, ZnCr$_2$Se$_4$ and CuInCr$_4$Se$_8$, to demonstrate the feasibility of this new approach and expose its possible limitations in experimental realizations.<br />Comment: 20 pages, 18 figures

Details

ISSN :
10797114 and 00319007
Volume :
129
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi.dedup.....9bedf2e4093a8f7868208679a619ed35