Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4

We study dynamical properties of the anisotropic triangular quantum antiferromagnet Cs2CuCl4. Inelastic neutron scattering measurements have established that the dynamical spin correlations cannot be understood within a linear spin wave analysis. We go beyond linear spin wave theory by taking intera...

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Main Authors: Veillette, M, James, A, Essler, F
Format: Journal article
Language:English
Published: 2005
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author Veillette, M
James, A
Essler, F
author_facet Veillette, M
James, A
Essler, F
author_sort Veillette, M
collection OXFORD
description We study dynamical properties of the anisotropic triangular quantum antiferromagnet Cs2CuCl4. Inelastic neutron scattering measurements have established that the dynamical spin correlations cannot be understood within a linear spin wave analysis. We go beyond linear spin wave theory by taking interactions between magnons into account in a 1S expansion. We determine the dynamical structure factor and carry out extensive comparisons with experimental data. We find that compared to linear spin wave theory, a significant fraction of the scattering intensity is shifted to higher energies and strong scattering continua are present. However, the 1S expansion fails to account for the experimentally observed large quantum renormalization of the exchange energies. © 2005 The American Physical Society.
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spelling oxford-uuid:724ce376-8b6a-4423-a3b9-8abaf988c90b2022-03-26T19:49:11ZSpin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:724ce376-8b6a-4423-a3b9-8abaf988c90bEnglishSymplectic Elements at Oxford2005Veillette, MJames, AEssler, FWe study dynamical properties of the anisotropic triangular quantum antiferromagnet Cs2CuCl4. Inelastic neutron scattering measurements have established that the dynamical spin correlations cannot be understood within a linear spin wave analysis. We go beyond linear spin wave theory by taking interactions between magnons into account in a 1S expansion. We determine the dynamical structure factor and carry out extensive comparisons with experimental data. We find that compared to linear spin wave theory, a significant fraction of the scattering intensity is shifted to higher energies and strong scattering continua are present. However, the 1S expansion fails to account for the experimentally observed large quantum renormalization of the exchange energies. © 2005 The American Physical Society.
spellingShingle Veillette, M
James, A
Essler, F
Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title_full Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title_fullStr Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title_full_unstemmed Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title_short Spin dynamics of the quasi-two-dimensional spin-1/2 quantum magnet Cs2CuCl4
title_sort spin dynamics of the quasi two dimensional spin 1 2 quantum magnet cs2cucl4
work_keys_str_mv AT veillettem spindynamicsofthequasitwodimensionalspin12quantummagnetcs2cucl4
AT jamesa spindynamicsofthequasitwodimensionalspin12quantummagnetcs2cucl4
AT esslerf spindynamicsofthequasitwodimensionalspin12quantummagnetcs2cucl4