@inproceedings{f4cd292b6cb34da381eefcb0edf82fcc,
title = "Distributed Coordination Based on Quantum Entanglement (Work in Progress)",
abstract = "This paper demonstrates and proves that the coordination of actions in a distributed swarm can be enhanced by using quantum entanglement. In particular, we focus on • Global and local simultaneous random walks, using entangled qubits that collapse into the same (or opposite) direction, either random direction or totally controlled simultaneous movements. • Identifying eavesdropping from malicious eavesdroppers aimed at disturbing the simultaneous random walks by using entangled qubits that were sent at random or with predefined bases.",
keywords = "Byzantine faults, Mobile robots, Quantum entanglement, Self-stabilization",
author = "Yotam Ashkenazi and Shlomi Dolev",
note = "Publisher Copyright: {\textcopyright} 2022 IEEE.; 21st IEEE International Symposium on Network Computing and Applications, NCA 2022 ; Conference date: 14-12-2022 Through 16-12-2022",
year = "2022",
month = jan,
day = "1",
doi = "10.1109/NCA57778.2022.10013538",
language = "American English",
series = "NCA 2022 - 2022 IEEE 21st International Symposium on Network Computing and Applications",
pages = "303--305",
editor = "Michele Colajanni and Luca Ferretti and Miguel Pardal and Avresky, {Dimiter R.}",
booktitle = "NCA 2022 - 2022 IEEE 21st International Symposium on Network Computing and Applications",
}