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Spin waves and spatially anisotropic exchange interactions in the S=2 stripe antiferromagnet Rb0.8Fe1.5 S2

Authors :
Wang, Meng
Valdivia, P
Yi, Ming
Chen, JX
Zhang, WL
Ewings, RA
Perring, TG
Zhao, Yang
Harriger, LW
Lynn, JW
Bourret-Courchesne, E
Dai, Pengcheng
Lee, DH
Yao, DX
Birgeneau, RJ
Source :
Wang, M; Valdivia, P; Yi, M; Chen, JX; Zhang, WL; Ewings, RA; et al.(2015). Spin waves and spatially anisotropic exchange interactions in the S=2 stripe antiferromagnet Rb0.8Fe1.5 S2. Physical Review B-Condensed Matter and Materials Physics, 92(4). doi: 10.1103/PhysRevB.92.041109. UC Berkeley: Retrieved from: http://www.escholarship.org/uc/item/5gp6z5k3, Physical Review B-Condensed Matter and Materials Physics, vol 92, iss 4, Physical Review B, vol 92, iss 4
Publication Year :
2015
Publisher :
eScholarship, University of California, 2015.

Abstract

©2015 American Physical Society. An inelastic neutron scattering study of the spin waves corresponding to the stripe antiferromagnetic order in insulating Rb0.8Fe1.5S2 throughout the Brillouin zone is reported. The spin wave spectra are well described by a Heisenberg Hamiltonian with anisotropic in-plane exchange interactions. Integrating the ordered moment and the spin fluctuations results in a total moment squared of 27.6±4.2μB2/Fe, consistent with S≈2. Unlike XFe2As2 (X=Ca, Sr, and Ba), where the itinerant electrons have a significant contribution, our data suggest that this stripe antiferromagnetically ordered phase in Rb0.8Fe1.5S2 is a Mott-like insulator with fully localized 3d electrons and a high-spin ground state configuration. Nevertheless, the anisotropic exchange couplings appear to be universal in the stripe phase of Fe pnictides and chalcogenides.

Details

Language :
English
Database :
OpenAIRE
Journal :
Wang, M; Valdivia, P; Yi, M; Chen, JX; Zhang, WL; Ewings, RA; et al.(2015). Spin waves and spatially anisotropic exchange interactions in the S=2 stripe antiferromagnet Rb0.8Fe1.5 S2. Physical Review B-Condensed Matter and Materials Physics, 92(4). doi: 10.1103/PhysRevB.92.041109. UC Berkeley: Retrieved from: http://www.escholarship.org/uc/item/5gp6z5k3, Physical Review B-Condensed Matter and Materials Physics, vol 92, iss 4, Physical Review B, vol 92, iss 4
Accession number :
edsair.dedup.wf.001..ff205f322120eef7486e7f51dc3213ea