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  4. Complete Characterization of Quantum Correlations by Randomized Measurements
 
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2023
Journal Article
Title

Complete Characterization of Quantum Correlations by Randomized Measurements

Abstract
The fact that quantum mechanics predicts stronger correlations than classical physics is an essential cornerstone of quantum information processing. Indeed, these quantum correlations are a valuable resource for various tasks, such as quantum key distribution or quantum teleportation, but characterizing these correlations in an experimental setting is a formidable task, especially in scenarios where no shared reference frames are available. By definition, quantum correlations are reference-frame independent, i.e., invariant under local transformations; this physically motivated invariance implies, however, a dedicated mathematical structure and, therefore, constitutes a roadblock for an efficient analysis of these correlations in experiments. Here we provide a method to directly measure any locally invariant property of quantum states using locally randomized measurements, and we present a detailed toolbox to analyze these correlations for two quantum bits. We implement these methods experimentally using pairs of entangled photons, characterizing their usefulness for quantum teleportation and their potential to display quantum nonlocality in its simplest form. Our results can be applied to various quantum computing platforms, allowing simple analysis of correlations between arbitrary distant qubits in the architecture.
Author(s)
Wyderka, Nikolai
Heinrich-Heine-Universität, Düsseldorf  
Ketterer, Andreas
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Imai, Satoya
Universität Siegen
Bönsel, Jan Lennart
Universität Siegen
Jones, Daniel E.
DEVCOM Army Research Laboratory
Kirby, Brian T.
DEVCOM Army Research Laboratory
Yu, Xiao-Dong
Universität Siegen
Gühne, Otfried
Universität Siegen
Journal
Physical review letters  
DOI
10.1103/PhysRevLett.131.090201
Language
English
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
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