Publication | Open Access
Two-Particle Aharonov-Bohm Effect and Entanglement in the Electronic Hanbury Brown–Twiss Setup
280
Citations
36
References
2004
Year
Quantum ScienceEngineeringQuantum ComputingPhysicsMany-body Quantum PhysicHanbury Brown-twiss GeometryQuantum Hall RegimeNatural SciencesApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemNormal ReservoirsQuantum TheoryTopological Quantum StateQuantum EntanglementTopological PhaseTwo-particle Aharonov-bohm EffectQuantum Decoherence
We analyze a Hanbury Brown-Twiss geometry in which particles are injected from two independent sources into a mesoscopic conductor in the quantum Hall regime. All partial waves end in different reservoirs without generating any single-particle interference; in particular, there is no single-particle Aharonov-Bohm effect. However, exchange effects lead to two-particle Aharonov-Bohm oscillations in the zero-frequency current cross correlations. We demonstrate that this is related to two-particle orbital entanglement, detected via violation of a Bell inequality. The transport is along edge states and only adiabatic quantum point contacts and normal reservoirs are employed.
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