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Circle Maps and Mode Locking in the Driven Electrical Conductivity of Barium Sodium Niobate Crystals
75
Citations
19
References
1986
Year
Circle MapEngineeringFerroelectric ApplicationSuperconductivityDc FieldsMaterials SciencePhysicsCrystal MaterialTopological PhaseCrystallographySolid-state PhysicCircle MapsFerroelasticsMode LockingApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemDriven Electrical ConductivityStaircase BehaviorNonlinear Oscillation
Instabilities in the electrical conductivity of barium sodium niobate crystals are studied with ac and dc fields. Phase portraits, Poincar\'e sections, and return maps are constructed from measured signals in the quasiperiodic state. We show that the dynamical behavior of the system can be modeled by a 1D circle map. Mode locking is observed in the system prior to the transition to chaos; the mode-locked intervals exhibit a devil's staircase behavior.
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