Hyper- and hybrid nonlocality

Yanna Li, Manuel Gessner, Weidong Li, and Augusto Smerzi
Phys. Rev. Lett. 120, 050404 – Published 1 February 2018

Abstract

The controlled generation and identification of quantum correlations, usually encoded in either qubits or continuous degrees of freedom, builds the foundation of quantum information science. Recently, more sophisticated approaches, involving a combination of two distinct degrees of freedom, have been proposed to improve on the traditional strategies. Hyperentanglement describes simultaneous entanglement in more than one distinct degree of freedom, whereas hybrid entanglement refers to entanglement shared between a discrete and a continuous degree of freedom. In this work we propose a scheme that allows us to combine the two approaches, and to extend them to the strongest form of quantum correlations. Specifically, we show how two identical, initially separated particles can be manipulated to produce Bell nonlocality among their spins, among their momenta, as well as across their spins and momenta. We discuss possible experimental realizations with atomic and photonic systems.

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  • Received 26 July 2017
  • Revised 13 November 2017

DOI:https://doi.org/10.1103/PhysRevLett.120.050404

© 2018 American Physical Society

Physics Subject Headings (PhySH)

General PhysicsAtomic, Molecular & OpticalQuantum Information, Science & Technology

Authors & Affiliations

Yanna Li1, Manuel Gessner2, Weidong Li1,*, and Augusto Smerzi2

  • 1Institute of Theoretical Physics and Department of Physics, State Key Laboratory of Quantum Optics and Quantum Optics Devices, Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
  • 2QSTAR, INO-CNR and LENS, Largo Enrico Fermi 2, I-50125 Firenze, Italy

  • *wdli@sxu.edu.cn

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Issue

Vol. 120, Iss. 5 — 2 February 2018

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