Magnetoelastic waves and a group-theoretical determination of selection rules for magnon-phonon interactions in antiferromagnetic FeCl2
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy,General Engineering,Condensed Matter Physics
Link
http://stacks.iop.org/0022-3719/7/i=23/a=019/pdf
Reference21 articles.
1. Magnetic Properties of FeCl2in Zero Field. I. Excitations
2. Space Group Theory for Spin Waves
3. Theory of spin-space groups
4. Selection rules for inelastic neutron scattering by magnetic crystals. I. The symmetries of magnetoelastic waves and the determination of selection rules for magnon-phonon interactions, with an application to antiferromagnetic FeF2
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1. Coupling magneto-elastic Lagrangians to spin transfer torque sources;Journal of Magnetism and Magnetic Materials;2019-01
2. Investigations of the magnetic and lattice vibrations in CoBr 2 using neutron scattering;Journal de Physique;1982
3. Reorientation of magnetic moments under mechanical stresses in FeCl 2 at 0 K : theoretical predictions;Journal de Physique;1980
4. Evidence of two-phonon vibronic progressions in layered3d-metal dihalides;Physical Review B;1979-11-15
5. FeCl2 in a transverse magnetic field : inequivalent behaviour of the two sublattices at 0 K;Journal de Physique;1979
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