Transverse interactions in Dicke QBs induce collective spin squeezing for exponential coupling boost and act as nonlinear torque to guide optimal charging paths, remaining robust under dissipation and sometimes outperforming ideal cases.
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A general analytical expression for classical ergotropy is derived and shown to be the classical limit of the quantum expression for ergodic systems, with the coherent-incoherent decomposition persisting classically.
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Spin-Squeezing-Enhanced Charging for Quantum Dicke Batteries
Transverse interactions in Dicke QBs induce collective spin squeezing for exponential coupling boost and act as nonlinear torque to guide optimal charging paths, remaining robust under dissipation and sometimes outperforming ideal cases.
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Unified theory of classical and quantum ergotropy
A general analytical expression for classical ergotropy is derived and shown to be the classical limit of the quantum expression for ergodic systems, with the coherent-incoherent decomposition persisting classically.