Bell non-locality between distant quantum systems-that is, joint correlations which violate a Bell inequality-can be verified without trusting the measurement devices used, nor those performing the measurements. This leads to unconditionally secure protocols for quantum information tasks such as cryptographic key distribution. However, complete verification of Bell non-locality requires high detection efficiencies, and is not robust to typical transmission losses over long distances. In contrast, quantum or Einstein-Podolsky-Rosen steering, a weaker form of quantum correlation, can be verified for arbitrarily low detection efficiencies and high losses. The cost is that current steering-verification protocols require complete trust in one of...
Quantum steering allows two parties to verify shared entanglement even if one measurement device is ...
Tests of the predictions of quantum mechanics for entangled systems have provided increasing evidenc...
The generation of certifiable randomness is one of the most promising applications of quantum techno...
Bell non-locality between distant quantum systems—that is, joint correlations which violate a Bell i...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
It was believed until recently that the verification of quantum entanglement and quantum steering, b...
We analyze the security and feasibility of a protocol for quantum key distribution (QKD) in a contex...
Within the framework of quantum refereed steering games, quantum steerability can be certified witho...
One of the most noteworthy and fundamental features of quantum mechanics is the fact that it admit...
We develop a unified approach to classical, quantum and post-quantum steering. The framework is base...
Recently quantum nonlocality has been classified into three distinct types: quantum entanglement, Ei...
Einstein-Podolsky-Rosen steering incarnates a useful nonclassical correlation which sits between ent...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Violation of Bell's inequality has been the mainspring for secure key generation in an entanglement ...
We derive a device-independent quantum key distribution protocol based on synchronous correlations a...
Quantum steering allows two parties to verify shared entanglement even if one measurement device is ...
Tests of the predictions of quantum mechanics for entangled systems have provided increasing evidenc...
The generation of certifiable randomness is one of the most promising applications of quantum techno...
Bell non-locality between distant quantum systems—that is, joint correlations which violate a Bell i...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
It was believed until recently that the verification of quantum entanglement and quantum steering, b...
We analyze the security and feasibility of a protocol for quantum key distribution (QKD) in a contex...
Within the framework of quantum refereed steering games, quantum steerability can be certified witho...
One of the most noteworthy and fundamental features of quantum mechanics is the fact that it admit...
We develop a unified approach to classical, quantum and post-quantum steering. The framework is base...
Recently quantum nonlocality has been classified into three distinct types: quantum entanglement, Ei...
Einstein-Podolsky-Rosen steering incarnates a useful nonclassical correlation which sits between ent...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Violation of Bell's inequality has been the mainspring for secure key generation in an entanglement ...
We derive a device-independent quantum key distribution protocol based on synchronous correlations a...
Quantum steering allows two parties to verify shared entanglement even if one measurement device is ...
Tests of the predictions of quantum mechanics for entangled systems have provided increasing evidenc...
The generation of certifiable randomness is one of the most promising applications of quantum techno...