Classical spin dynamics based on SU(N) coherent states
ORAL
Abstract
We introduce a classical limit of the dynamics of quantum spin systems based on coherent states of SU(N), where N is the dimension of the local Hilbert space. This approach, which generalizes the well-known Landau-Lifshitz dynamics (LLD) from SU(2) to SU(N), provides a better approximation to the exact quantum dynamics for a large class of realistic spin Hamiltonians, including S≥1 systems with large single-ion anisotropy and weakly-coupled multi-spin units, such as dimers or trimers. We illustrate this idea by applying the SU(3) LLD to model the finite-temperature inelastic neutron scattering data of a spin-one antiferromagnet Ba2FeSi2O7. Unlike the traditional LLD based on SU(2) coherent states, the results obtained with classical SU(3) spins reproduce the measured spectrum in the whole temperature range.
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Publication: https://doi.org/10.1103/PhysRevB.104.104409
Presenters
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Hao Zhang
University of Tennessee
Authors
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Hao Zhang
University of Tennessee
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Seunghwan Do
Oak Ridge National Laboratory, Oak Ridge National Lab
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Andrew Christianson
Materials Science and Technology Division, ORNL, USA, Oak Ridge National Laboratory, Oak Ridge National Lab, oak ridge national lab
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Cristian Batista
University of Tennessee