November 2023

Journal

Tomonaga–Luttinger liquid behavior and spinon confinement in YbAlO3

By:
Liusuo, Wu; Nikitin, Stanislav; Zhentao, Wang; W, Zhu; Batista, Cristian D; Tsvelik, A.; Samarakoon, Anjana M; Tennant, David A; Brando, M; Vasilechko, L; Frontzek, Matthias D; Savici, Andrei T; Sala, Gabriele ; Ehlers, Georg ; Christianson, Andrew D; Lumsden, Mark D; Podlesnyak, Andrey A
Journal Name:
Nature Communications
Page Number:
698
Volume:
10
Issue Number:
1
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1038/s41467-019-08485-7

Abstract

Low dimensional quantum magnets are interesting because of the emerging collective behavior arising from strong quantum fluctuations. The one-dimensional (1D) S = 1/2 Heisenberg antiferromagnet is a paradigmatic example, whose low-energy excitations, known as spinons, carry fractional spin S = 1/2. These fractional modes can be reconfined by the application of a staggered magnetic field. Even though considerable progress has been made in the theoretical understanding of such magnets, experimental realizations of this low-dimensional physics are relatively rare. This is particularly true for rare-earth-based magnets because of the large effective spin anisotropy induced by the combination of strong spin–orbit coupling and crystal field splitting. Here, we demonstrate that the rare-earth perovskite YbAlO3 provides a realization of a quantum spin S = 1/2 chain material exhibiting both quantum critical Tomonaga–Luttinger liquid behavior and spinon confinement–deconfinement transitions in different regions of magnetic field–temperature phase diagram.