Van Hove singularity in the magnon spectrum of the antiferromagnetic quantum honeycomb lattice

Сингулярность Ван Хова в магнонном спектре антиферромагнитной квантовой сотовой решётки
Gabriele Sala, M. B. Stone, Binod K. Rai, Andrew F. May, Pontus Laurell, V. Ovidiu Garlea, Nicholas P. Butch, M. D. Lumsden, G. Ehlers, Ganesh Pokharel, A. Podlesnyak, David Mandrus, David Parker, Satoshi Okamoto, Gábor B. Halász, A. D. Christianson
2021-01-08

Van Hove singularityYbCl3inelastic neutron scatteringmagnon spectrumtwo-magnon continuum
Abstract In quantum magnets, magnetic moments fluctuate heavily and are strongly entangled with each other, a fundamental distinction from classical magnetism. Here, with inelastic neutron scattering measurements, we probe the spin correlations of the honeycomb lattice quantum magnet YbCl 3 . A linear spin wave theory with a single Heisenberg interaction on the honeycomb lattice, including both transverse and longitudinal channels of the neutron response, reproduces all of the key features in the spectrum. In particular, we identify a Van Hove singularity, a clearly observable sharp feature within a continuum response. The demonstration of such a Van Hove singularity in a two-magnon continuum is important as a confirmation of broadly held notions of continua in quantum magnetism and additionally because analogous features in two-spinon continua could be used to distinguish quantum spin liquids from merely disordered systems. These results establish YbCl 3 as a benchmark material for quantum magnetism on the honeycomb lattice.
1
A linear spin-wave model with a single Heisenberg interaction reproduces the key spectral features, including transverse and longitudinal neutron-response channels.
2
Inelastic neutron scattering probes spin correlations in the honeycomb-lattice quantum magnet YbCl3.
3
Observation of the singularity supports established concepts of continua in quantum magnetism and may guide identification of analogous features in two-spinon continua.
4
The study identifies a clearly observable Van Hove singularity as a sharp feature within the two-magnon continuum.
5
YbCl3 is established as a benchmark material for studying quantum magnetism on the honeycomb lattice.

the honeycomb-lattice quantum magnet YbCl3

spin correlations and the magnon-spectrum Van Hove singularity, including the two-magnon continuum neutron response

Publication Details
Publication Date
2021-01-08
Journal
Publisher
ISSN
Cited by
50
Access Type
Author Information
Authors
Gabriele Sala
M. B. Stone
Binod K. Rai
Andrew F. May
Pontus Laurell
V. Ovidiu Garlea
Nicholas P. Butch
M. D. Lumsden
G. Ehlers
Ganesh Pokharel
A. Podlesnyak
David Mandrus
David Parker
Satoshi Okamoto
Gábor B. Halász
A. D. Christianson
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%