Device-independent certification of quantum devices is of crucial importance for the development of secure quantum information protocols. So far, the most studied scenario corresponds to a system consisting of different non-characterized devices that observers probe with classical inputs to obtain classical outputs. The certification of relevant quantum properties follows from the observation of correlations between these events that do not have a classical counterpart. In the fully device-independent scenario no assumptions are made on the devices and therefore their non-classicality follows from Bell non-locality. There exist other scenarios, known as semi-device-independent, in which assumptions are made on the devices, such as their dim...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...
Quantum technologies promise advantages over their classical counterparts in the fields of computati...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Quantum information is a new paradigm in which quantum systems are used to carry, transfer and proce...
Quantum information is a new paradigm in which quantum systems are used to carry, transfer and proce...
The last two decades have been a very fruitful period for the fundamental research related to quantu...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...
Quantum technologies promise advantages over their classical counterparts in the fields of computati...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...
Quantum information is a new paradigm in which quantum systems are used to carry, transfer and proce...
Quantum information is a new paradigm in which quantum systems are used to carry, transfer and proce...
The last two decades have been a very fruitful period for the fundamental research related to quantu...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
7+10 pages, 2+3 figures, 1 tableSelf-testing is a method to certify devices from the result of a Bel...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
We introduce a protocol for authenticated teleportation, which can be proven secure even when the re...
Quantum technologies promise advantages over their classical counterparts in the fields of computati...
Self-testing is a method to characterise an arbitrary quantum system based only on its classical inp...