Cavity driving induces coherent magnetization and polariton signatures in d-wave altermagnets via selective sublattice coupling in a mean-field Lindblad model.
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Density-modulated atomic ensembles in coupled cavities enable control of mode-mode couplings via interference, producing tunable atom-photon spectral subsplittings and selective photon transfer.
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Cavity-induced coherent magnetization and polaritons in altermagnets
Cavity driving induces coherent magnetization and polariton signatures in d-wave altermagnets via selective sublattice coupling in a mean-field Lindblad model.
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Engineering Atom-Photon Hybridization with Density-Modulated Atomic Ensembles in Coupled Cavities
Density-modulated atomic ensembles in coupled cavities enable control of mode-mode couplings via interference, producing tunable atom-photon spectral subsplittings and selective photon transfer.