Detection of entanglement in asymmetric quantum networks and multipartite quantum steering

Cavalcanti, D.; Skrzypczyk, P.; Aguilar, G. H.; Nery, R. V.; Ribeiro, P. H. Souto; Walborn, S. P.

Abstract

The future of quantum communication relies on quantum networks composed by observers sharing multipartite quantum states. The certification of multipartite entanglement will be crucial to the usefulness of these networks. In many real situations it is natural to assume that some observers are more trusted than others in the sense that they have more knowledge of their measurement apparatuses. Here we propose a general method to certify all kinds of multipartite entanglement in this asymmetric scenario and experimentally demonstrate it in an optical experiment. Our results, which can be seen as a definition of genuine multipartite quantum steering, give a method to detect entanglement in a scenario in between the standard entanglement and fully device-independent scenarios, and provide a basis for semi-device-independent cryptographic applications in quantum networks.

Más información

Título según WOS: ID WOS:000360346400006 Not found in local WOS DB
Título de la Revista: NATURE COMMUNICATIONS
Volumen: 6
Editorial: Nature Research
Fecha de publicación: 2015
DOI:

10.1038/ncomms8941

Notas: ISI