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A Collective-Spin Derivation of the Uniform Magnon Hamiltonian in Cavity Magnonics

arXiv
Authors: Tomas Aguiar, Marcos Cesar de Oliveira

Year

2026

Paper ID

69594

Status

Preprint

Abstract Read

~2 min

Abstract Words

146

Citations

0

Abstract

We present a direct collective-spin derivation of the effective uniform-mode Hamiltonian used in cavity magnonics. Starting from a nearest-neighbor Heisenberg ferromagnet coupled to long-wavelength magnetic fields, we show that the relevant dynamics can be restricted to the fully symmetric spin sector, where the exchange interaction contributes only a constant energy shift and the ferromagnet behaves as a macrospin of length Ns. Applying the Holstein--Primakoff transformation directly to this total spin yields the usual uniform magnon mode and its leading nonlinear corrections without first introducing site-resolved bosonic operators. This collective formulation makes explicit the interpretation of the ferromagnet as a synthetic large-spin atom and provides a compact route to the effective Hamiltonians used in driven and Floquet cavity magnonics. As a physical consequence, the leading nonlinear correction produces an occupation-dependent reduction of the effective magnon--photon coupling, providing a simple signature of finite-spin saturation under strong uniform-mode driving.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • We present a direct collective-spin derivation of the effective uniform-mode Hamiltonian used in cavity magnonics.

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