Treating the oscillator potential as a state removes terminal-jump boundary conditions from minimum-work protocols and reduces bulk optimal dynamics to a universal centre-manifold turnpike.
org/10.1063/1.5143602
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Optimal Control of Engineered Swift Equilibration of Nanomechanical Oscillators
Treating the oscillator potential as a state removes terminal-jump boundary conditions from minimum-work protocols and reduces bulk optimal dynamics to a universal centre-manifold turnpike.