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
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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