Self-testing refers to the possibility of characterizing an unknown quantum device based only on the observed statistics. Here we develop methods for self-testing entangled quantum measurements, a key element for quantum networks. Our approach is based on the natural assumption that separated physical sources in a network should be considered independent. This provides a natural formulation of the problem of certifying entangled measurements. Considering the setup of entanglement swapping, we derive a robust self-test for the Bell-state measurement, tolerating noise levels up to 5%. We also discuss generalizations to other entangled measurements
Given a Bell inequality, if its maximal quantum violation can be achieved only by a single set of me...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...
Self-testing is a method of quantum state and measurement estimation that does not rely on assumptio...
Quantum technologies promise advantages over their classical counterparts in the fields of computati...
The goal of self-testing is to characterize an a priori unknown quantum system based solely on measu...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Abstract Bell nonlocality as a resource for device-independent certification schemes has been studie...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
Quantum self-testing is a device-independent way to certify quantum states and measurements using on...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Given a Bell inequality, if its maximal quantum violation can be achieved only by a single set of me...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...
Self-testing is a method of quantum state and measurement estimation that does not rely on assumptio...
Quantum technologies promise advantages over their classical counterparts in the fields of computati...
The goal of self-testing is to characterize an a priori unknown quantum system based solely on measu...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Abstract Bell nonlocality as a resource for device-independent certification schemes has been studie...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
International audienceDevice-independent certification, also known as self-testing, aims at guarante...
Quantum self-testing is a device-independent way to certify quantum states and measurements using on...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Given a Bell inequality, if its maximal quantum violation can be achieved only by a single set of me...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...