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The square-lattice spiral magnet Ba2CuGe2O7 in an in-plane magnetic field

A. Zheludev, S. Maslov, G. Shirane, Y. Sasago, N. Koide, K. Uchinokura, D. A. Tennant, S. E. Nagler

cond-matarXiv:cond-mat/9707166

Abstract

The magnetic structure of Ba2CuGe2O7 is investigated by neutron diffraction in magnetic fields applied along several directions in the (a,b) plane of the crystal. In relatively weak fields, H 0.5~T, the propagation vector of the spin-spiral rotates to form a finite angle with the field direction. This angle depends on the orientation of H itself. The rotation of the propagation vector is accompanied by a re-orientation of the plane of spin rotation in the spiral. The observed behaviour is well described by a continuous-limit form of a free energy functional that includes exchange and Dzyaloshinskii-Moriya interactions, as well as the Zeeman energy and an empirical anisotropy term.

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