A continuous variable (CV), measurement device independent (MDI) quantum key distribution (QKD) protocol is analyzed, enabling three parties to connect for quantum conferencing. We utilise a generalised Bell detection at an untrusted relay and a postselection procedure, in which distant parties reconcile on the signs of the displacements of the quadratures of their prepared coherent states. We derive the rate of the protocol under a collective pure-loss attack, demonstrating improved rate-distance performance compared to the equivalent non-post-selected protocol. In the symmetric configuration in which all the parties lie the same distance from the relay, we find a positive key rate over 6 km. Such postselection techniques can be used to im...
This report reviews two quantum key distribution (QKD) protocols: the BB84 protocol and the measurem...
Quantum key distribution (QKD) is a quantum cryptographic task that allows a random secret key to be...
The development of quantum networks will be paramount towards practical and secure telecommunication...
Currently most progresses on quantum secret sharing suffer from rate-distance bound, and thus the ke...
Quantum secret sharing is an important cryptographic primitive for network applications ranging from...
Quantum Key Distribution (QKD) is a prominent application in the field of quantum cryptography provi...
We propose a continuous-variable measurement-device-independent quantum key distribution (CV-MDI QKD...
Measurement-device-independent quantum key distribution (MDI QKD) offers great security in practice ...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Continuous variable quantum key distribution (CV-QKD) is a promising emerging technology for the dis...
The development of quantum networks will be paramount towards practical and secure telecommunication...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Quantum key distribution -- the establishment of information-theoretically secure keys based on quan...
Modern security proofs of quantum key distribution (QKD) must take finite-size effects and composabl...
One of the main open problems in quantum communication is the design of efficient quantum-secured ne...
This report reviews two quantum key distribution (QKD) protocols: the BB84 protocol and the measurem...
Quantum key distribution (QKD) is a quantum cryptographic task that allows a random secret key to be...
The development of quantum networks will be paramount towards practical and secure telecommunication...
Currently most progresses on quantum secret sharing suffer from rate-distance bound, and thus the ke...
Quantum secret sharing is an important cryptographic primitive for network applications ranging from...
Quantum Key Distribution (QKD) is a prominent application in the field of quantum cryptography provi...
We propose a continuous-variable measurement-device-independent quantum key distribution (CV-MDI QKD...
Measurement-device-independent quantum key distribution (MDI QKD) offers great security in practice ...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Continuous variable quantum key distribution (CV-QKD) is a promising emerging technology for the dis...
The development of quantum networks will be paramount towards practical and secure telecommunication...
Nonlocal correlations, a longstanding foundational topic in quantum information, have recently found...
Quantum key distribution -- the establishment of information-theoretically secure keys based on quan...
Modern security proofs of quantum key distribution (QKD) must take finite-size effects and composabl...
One of the main open problems in quantum communication is the design of efficient quantum-secured ne...
This report reviews two quantum key distribution (QKD) protocols: the BB84 protocol and the measurem...
Quantum key distribution (QKD) is a quantum cryptographic task that allows a random secret key to be...
The development of quantum networks will be paramount towards practical and secure telecommunication...