Literature DB >> 30468593

Postselection-Loophole-Free Bell Violation with Genuine Time-Bin Entanglement.

Francesco Vedovato1,2, Costantino Agnesi1, Marco Tomasin1, Marco Avesani1, Jan-Åke Larsson3, Giuseppe Vallone1,4, Paolo Villoresi1,4.   

Abstract

Entanglement is an invaluable resource for fundamental tests of physics and the implementation of quantum information protocols such as device-independent secure communications. In particular, time-bin entanglement is widely exploited to reach these purposes both in free space and optical fiber propagation, due to the robustness and simplicity of its implementation. However, all existing realizations of time-bin entanglement suffer from an intrinsic postselection loophole, which undermines their usefulness. Here, we report the first experimental violation of Bell's inequality with "genuine" time-bin entanglement, free of the postselection loophole. We introduced a novel function of the interferometers at the two measurement stations, that operate as fast synchronized optical switches. This scheme allowed us to obtain a postselection-loophole-free Bell violation of more than 9 standard deviations. Since our scheme is fully implementable using standard fiber-based components and is compatible with modern integrated photonics, our results pave the way for the distribution of genuine time-bin entanglement over long distances.

Year:  2018        PMID: 30468593     DOI: 10.1103/PhysRevLett.121.190401

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  2 in total

Review 1.  The deep space quantum link: prospective fundamental physics experiments using long-baseline quantum optics.

Authors:  Makan Mohageg; Luca Mazzarella; Charis Anastopoulos; Jason Gallicchio; Bei-Lok Hu; Thomas Jennewein; Spencer Johnson; Shih-Yuin Lin; Alexander Ling; Christoph Marquardt; Matthias Meister; Raymond Newell; Albert Roura; Wolfgang P Schleich; Christian Schubert; Dmitry V Strekalov; Giuseppe Vallone; Paolo Villoresi; Lisa Wörner; Nan Yu; Aileen Zhai; Paul Kwiat
Journal:  EPJ Quantum Technol       Date:  2022-10-08       Impact factor: 7.000

2.  Propagation-induced revival of entanglement in the angle-OAM bases.

Authors:  Abhinandan Bhattacharjee; Mritunjay K Joshi; Suman Karan; Jonathan Leach; Anand K Jha
Journal:  Sci Adv       Date:  2022-08-05       Impact factor: 14.957

  2 in total

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