Spin-stripe phase in a frustrated zigzag spin-1/2 chain

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作者
M. Pregelj
A. Zorko
O. Zaharko
H. Nojiri
H. Berger
L. C. Chapon
D. Arčon
机构
[1] Jožef Stefan Institute,
[2] Laboratory for Neutron Scattering and Imaging,undefined
[3] Paul Scherrer Institute,undefined
[4] Institute for Materials Research,undefined
[5] Tohoku University,undefined
[6] Ecole polytechnique fédérale de Lausanne,undefined
[7] Institut Laue-Langevin,undefined
[8] Faculty of Mathematics and Physics,undefined
[9] University of Ljubljana,undefined
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摘要
Motifs of periodic modulations are encountered in a variety of natural systems, where at least two rival states are present. In strongly correlated electron systems, such behaviour has typically been associated with competition between short- and long-range interactions, for example, between exchange and dipole–dipole interactions in the case of ferromagnetic thin films. Here we show that spin-stripe textures may develop also in antiferromagnets, where long-range dipole–dipole magnetic interactions are absent. A comprehensive analysis of magnetic susceptibility, high-field magnetization, specific heat and neutron diffraction measurements unveils β-TeVO4 as a nearly perfect realization of a frustrated (zigzag) ferromagnetic spin-1/2 chain. Notably, a narrow spin-stripe phase develops at elevated magnetic fields due to weak frustrated short-range interchain exchange interactions, possibly assisted by the symmetry-allowed electric polarization. This concept provides an alternative route for the stripe formation in strongly correlated electron systems and may help understanding of other widespread, yet still elusive, stripe-related phenomena.
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