Experimental hierarchy and optimal robustness of quantum correlations of two-qubit states with controllable white noise

Kateřina Jiráková, Antonín Černoch, Karel Lemr, Karol Bartkiewicz, and Adam Miranowicz
Phys. Rev. A 104, 062436 – Published 21 December 2021
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Abstract

We demonstrate a hierarchy of various classes of quantum correlations on experimentally prepared two-qubit Werner-like states with controllable white noise. Werner states, which are white-noise-affected Bell states, are prototypal examples for studying such a hierarchy as a function of the amount of white noise. We experimentally generate Werner states and their generalizations, i.e., partially entangled pure states affected by white noise. These states enable us to study the hierarchy of the following classes of correlations: separability, entanglement, steering in three- and two-measurement scenarios, and Bell nonlocality. We show that the generalized Werner states (GWSs) reveal fundamentally different aspects of the hierarchy compared to the Werner states. In particular, we find five different parameter regimes of the GWSs, including those steerable in a two-measurement scenario but not violating Bell inequalities. This regime cannot be observed for the usual Werner states. Moreover, we find threshold curves separating different regimes of the quantum correlations and find the optimal states which allow for the largest amount of white noise which does not destroy their specific quantum correlations (e.g., unsteerable entanglement). Thus, we could identify the optimal Bell-nondiagonal GWSs which are, for this specific meaning, more robust against the white noise compared to the Bell-diagonal GWSs (i.e., Werner states).

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  • Received 5 March 2021
  • Revised 1 September 2021
  • Accepted 2 December 2021

DOI:https://doi.org/10.1103/PhysRevA.104.062436

©2021 American Physical Society

Physics Subject Headings (PhySH)

Quantum Information, Science & Technology

Authors & Affiliations

Kateřina Jiráková1,*, Antonín Černoch2,†, Karel Lemr1,‡, Karol Bartkiewicz1,3,§, and Adam Miranowicz3,∥

  • 1Joint Laboratory of Optics of Palacký University and Institute of Physics of Czech Academy of Sciences, 17. listopadu 12, 779 00 Olomouc, Czech Republic
  • 2Institute of Physics of the Czech Academy of Sciences, Joint Laboratory of Optics of PU and IP AS CR, 17. listopadu 50A, 772 07 Olomouc, Czech Republic
  • 3Institute of Spintronics and Quantum Information, Faculty of Physics, Adam Mickiewicz University, 61-614 Poznań, Poland

  • *katerina.jirakova@upol.cz
  • acernoch@fzu.cz
  • k.lemr@upol.cz
  • §karol.bartkiewicz@upol.cz
  • miran@amu.edu.pl

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Issue

Vol. 104, Iss. 6 — December 2021

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