most citedLong-distance device-independent quantum key distribution with standard optics tools

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quant-ph2026

Enhancing noise robustness in device-independent conference key agreement with asymmetric parity-CHSH inequalities

Makoto Ishihara, Wojciech Roga, Jonatan Bohr Brask +1

Conference key agreement allows multiple remote parties to establish a shared secret key with information-theoretical security. In device-independent conference key agreement, secu…

quant-ph2026

Multipartite device-independent quantum key distribution using W states

Makoto Ishihara, Wojciech Roga, Masahiro Takeoka

Multipartite device-independent quantum key distribution (DI-QKD), also known as device-independent conference key agreement, enables more than two remote parties to share a common…

quant-ph20251 cited

Long-distance device-independent quantum key distribution with standard optics tools

Makoto Ishihara, Anthony Brendan, Wojciech Roga +2

Device-independent quantum key distribution (DI-QKD) enables information-theoretically secure key exchange between remote parties without any assumptions on the internal workings o…

quant-ph2025

Long-Distance Device-Independent Conference Key Agreement

Makoto Ishihara, Anders J. E. Bjerrum, Wojciech Roga +3

Device-independent quantum key distribution (DI-QKD) enables two remote parties to share an information-theoretically secure key without any assumptions on the inner workings of th…

quant-ph2025

Private quantum network sensing with efficient multi-partite entanglement distribution via lossy channels

Yoshihiro Ueda, Makoto Ishihara, Wojciech Roga +1

Quantum network sensing shows potential to enhance the estimation precision for functions of spatially distributed parameters beyond the shot noise limit. The key resource required…