Publication | Closed Access
Relativistic Quantum Scars
89
Citations
25
References
2009
Year
Quantum DynamicEngineeringRelativistic Quantum ScarsQuantum ComputingQuantum Mechanical PropertyQuantum TheoryQuantum EntanglementQuantum MatterQuantum SciencePhysicsSpecial RelativityQuantum Field TheoryGraphene Quantum DotStrong Conductance FluctuationsScarred StatesNatural SciencesApplied PhysicsQuantum ScarsGrapheneGraphene NanoribbonQuantum Chaos
The concentrations of wave functions about classical periodic orbits, or quantum scars, are a fundamental phenomenon in physics. An open question is whether scarring can occur in relativistic quantum systems. To address this question, we investigate confinements made of graphene whose classical dynamics are chaotic and find unequivocal evidence of relativistic quantum scars. The scarred states can lead to strong conductance fluctuations in the corresponding open quantum dots via the mechanism of resonant transmission.
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