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Renormalized Classical Theory of Quantum Magnets

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abstract

We derive a renormalized classical spin (RCS) theory for $S > 1/2$ quantum magnets by constraining a generalized classical theory that includes all multipolar fluctuations to a reduced CP$^1$ phase space of dipolar SU($2$) coherent states. When the spin Hamiltonian $\hat{\cal{H}}^{S}$ is linear in the spin operators $\hat{\boldsymbol{S}}_j$ for each lattice site $j$, the RCS Hamiltonian $\tilde{\cal{H}}_{\rm cl}$ coincides with the usual classical model $\cal{H}_{\rm cl} = \lim_{S\rightarrow\infty} \hat{\cal{H}}^S$. In the presence of non-linear terms, however, the RCS theory is more accurate than $\cal{H}_{\rm cl}$. For the many materials modeled by spin Hamiltonians with (non-linear) single-ion anisotropy terms, the use of the RCS theory is essential to accurately model phase diagrams and to extract the correct Hamiltonian parameters from neutron scattering data

fields

quant-ph 1

years

2025 1

verdicts

ACCEPT 1

representative citing papers

Sunny.jl: A Julia Package for Spin Dynamics

quant-ph · 2025-01-22 · accept · novelty 6.0

Sunny.jl unifies linear spin wave theory and classical spin dynamics with SU(N) coherent states to simulate spin dynamics and scattering spectra.

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  • Sunny.jl: A Julia Package for Spin Dynamics quant-ph · 2025-01-22 · accept · none · ref 5 · internal anchor

    Sunny.jl unifies linear spin wave theory and classical spin dynamics with SU(N) coherent states to simulate spin dynamics and scattering spectra.