We propose an experiment to test Bell’s inequality violation in condensed-matter physics. We show how to generate, manipulate, and detect entangled states using ballistic electrons in Coulomb-coupled semiconductor quantum wires. Due to its simplicity (only five gates are required to prepare entangled states and to test Bell’s inequality), the proposed semiconductor-based scheme can be implemented with currently available technology. Moreover, its basic ingredients may play a role towards large-scale quantum-information processing in solid-state devices.

Testing Bell's inequality using ballistic electrons in semiconductors / Ionicioiu, R.; Zanardi, P.; Rossi, Fausto. - In: PHYSICAL REVIEW A. - ISSN 1050-2947. - 63:5(2001), pp. 50101-1-50101-4. [10.1103/PhysRevA.63.050101]

Testing Bell's inequality using ballistic electrons in semiconductors

ROSSI, FAUSTO
2001

Abstract

We propose an experiment to test Bell’s inequality violation in condensed-matter physics. We show how to generate, manipulate, and detect entangled states using ballistic electrons in Coulomb-coupled semiconductor quantum wires. Due to its simplicity (only five gates are required to prepare entangled states and to test Bell’s inequality), the proposed semiconductor-based scheme can be implemented with currently available technology. Moreover, its basic ingredients may play a role towards large-scale quantum-information processing in solid-state devices.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/1405231
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