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Auteurs principaux: Gao, Shang, Lin, Ling-Fang, Laurell, Pontus, Chen, Qiang, Huang, Qing, Cruz, Clarina dela, Vemuru, Krishnamurthy V., Lumsden, Mark D., Nagler, Stephen E., Alvarez, Gonzalo, Dagotto, Elbio, Zhou, Haidong, Christianson, Andrew D., Stone, Matthew B.
Format: Preprint
Publié: 2023
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Accès en ligne:https://arxiv.org/abs/2307.12093
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author Gao, Shang
Lin, Ling-Fang
Laurell, Pontus
Chen, Qiang
Huang, Qing
Cruz, Clarina dela
Vemuru, Krishnamurthy V.
Lumsden, Mark D.
Nagler, Stephen E.
Alvarez, Gonzalo
Dagotto, Elbio
Zhou, Haidong
Christianson, Andrew D.
Stone, Matthew B.
author_facet Gao, Shang
Lin, Ling-Fang
Laurell, Pontus
Chen, Qiang
Huang, Qing
Cruz, Clarina dela
Vemuru, Krishnamurthy V.
Lumsden, Mark D.
Nagler, Stephen E.
Alvarez, Gonzalo
Dagotto, Elbio
Zhou, Haidong
Christianson, Andrew D.
Stone, Matthew B.
contents Magnetic excitations in the spin chain candidate Sr$_2$V$_3$O$_9$ have been investigated by inelastic neutron scattering on a single crystal sample. A spinon continuum with a bandwidth of $\sim22$ meV is observed along the chain formed by alternating magnetic V$^{4+}$ and nonmagnetic V$^{5+}$ ions. Incipient magnetic Bragg peaks due to weak ferromagnetic interchain couplings emerge when approaching the magnetic transition at $T_N\sim 5.3$ K while the excitations remain gapless within the instrumental resolution. Comparisons to the Bethe ansatz, density matrix renormalization group (DMRG) calculations, and effective field theories confirm Sr$_2$V$_3$O$_9$ as a host of weakly coupled $S = 1/2$ chains dominated by antiferromagnetic intrachain interactions of $\sim7.1$(1) meV.
format Preprint
id arxiv_https___arxiv_org_abs_2307_12093
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Spinon continuum in the Heisenberg quantum chain compound Sr$_2$V$_3$O$_9$
Gao, Shang
Lin, Ling-Fang
Laurell, Pontus
Chen, Qiang
Huang, Qing
Cruz, Clarina dela
Vemuru, Krishnamurthy V.
Lumsden, Mark D.
Nagler, Stephen E.
Alvarez, Gonzalo
Dagotto, Elbio
Zhou, Haidong
Christianson, Andrew D.
Stone, Matthew B.
Strongly Correlated Electrons
Materials Science
Magnetic excitations in the spin chain candidate Sr$_2$V$_3$O$_9$ have been investigated by inelastic neutron scattering on a single crystal sample. A spinon continuum with a bandwidth of $\sim22$ meV is observed along the chain formed by alternating magnetic V$^{4+}$ and nonmagnetic V$^{5+}$ ions. Incipient magnetic Bragg peaks due to weak ferromagnetic interchain couplings emerge when approaching the magnetic transition at $T_N\sim 5.3$ K while the excitations remain gapless within the instrumental resolution. Comparisons to the Bethe ansatz, density matrix renormalization group (DMRG) calculations, and effective field theories confirm Sr$_2$V$_3$O$_9$ as a host of weakly coupled $S = 1/2$ chains dominated by antiferromagnetic intrachain interactions of $\sim7.1$(1) meV.
title Spinon continuum in the Heisenberg quantum chain compound Sr$_2$V$_3$O$_9$
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2307.12093