Publication | Closed Access
Stochastic Phase Switching of a Parametrically Driven Electron in a Penning Trap
69
Citations
16
References
1999
Year
EngineeringAnalog DesignPenning TrapCharge TransportStochastic Phase SwitchingDriven Bistable SystemsCircuit SystemMixed-signal Integrated CircuitQuantum SimulationFluctuation-induced SwitchingElectronic CircuitQuantum ScienceElectrical EngineeringPhysicsNonlinear CircuitAtomic PhysicsOscillation PhaseCondensed Matter PhysicsApplied PhysicsParametrically Driven Electron
Fluctuation-induced switching of driven bistable systems, far from equilibrium, has been the focus of theoretical analysis and analog circuit computations. A parametrically driven electron in a Penning trap is shown to be a nearly ideal experimental realization. Noise applied to this dynamic double well system produces random switching between two steady-state oscillations which differ in the oscillation phase by ${180}^{\ensuremath{\circ}}$.
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