Quantum Shadows: The Dining Information Brokers
Theodore Andronikos, Constantinos Bitsakos, Konstantinos Nikas, Georgios I. Goumas, Nectarios Koziris

TL;DR
This paper introduces a novel quantum protocol for many-to-many, fully parallel, anonymous information exchange among geographically dispersed brokers, advancing secure distributed communication with guaranteed privacy and untraceability.
Contribution
It presents one of the first quantum protocols enabling many-to-many simultaneous information sharing with complete anonymity and distributed operation.
Findings
Enables fully parallel, single-step quantum communication among multiple brokers.
Guarantees anonymity and untraceability of all participants.
Operates effectively across diverse geographical locations.
Abstract
This article introduces the innovative Quantum Dining Information Brokers Problem, presenting a novel entanglement-based quantum protocol to address it. The scenario involves information brokers, all located in distinct geographical regions, engaging in a metaphorical virtual dinner. The objective is for each broker to share a unique piece of information with all others simultaneously. Unlike previous approaches, this protocol enables a fully parallel, single-step communication exchange among all brokers, regardless of their physical locations. A key feature of this protocol is its ability to ensure both the anonymity and privacy of all participants are preserved, meaning no broker can discern the identity of the sender behind any received information. At its core, the Quantum Dining Information Brokers Problem serves as a conceptual framework for achieving anonymous, untraceable,…
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