Van Hove singularity in the magnon spectrum of the antiferromagnetic quantum honeycomb lattice
Сингулярность Ван Хова в магнонном спектре антиферромагнитной квантовой сотовой решётки
2021-01-08
SCID: 54.1/pkj39yht
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Van Hove singularityYbCl3inelastic neutron scatteringmagnon spectrumtwo-magnon continuum
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Abstract (AI)
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.
Key Findings
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.
Research Object
the honeycomb-lattice quantum magnet YbCl3
Research Subject
spin correlations and the magnon-spectrum Van Hove singularity, including the two-magnon continuum neutron response
Publication Details
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2021-01-08
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