Publication | Open Access
Quantum time crystal by decoherence: Proposal with an incommensurate charge density wave ring
21
Citations
28
References
2017
Year
Quantum DynamicQuantum Lattice SystemEngineeringTime Translation SymmetryIncommensurate Charge DensityQuantum EngineeringQuantum ComputingQuantum Time CrystalQuantum TheoryQuantum SciencePhysicsQuantum DecoherenceQuantum OpticRing SystemApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemQuantum ChaosQuantized Icdw Ring
We show that time translation symmetry of a ring system with a macroscopic quantum ground state is broken by decoherence. In particular, we consider a ring-shaped incommensurate charge density wave (ICDW ring) threaded by a fluctuating magnetic flux: the Caldeira-Leggett model is used to model the fluctuating flux as a bath of harmonic oscillators. We show that the charge density expectation value of a quantized ICDW ring coupled to its environment oscillates periodically. The Hamiltonians considered in this model are time independent unlike ``Floquet time crystals'' considered recently. Our model forms a metastable quantum time crystal with a finite length in space and in time.
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