Enhancing Quantum Key Distribution with Quantum Projective Simulation

Research output: Contribution to book/Conference proceedings/Anthology/ReportConference contributionContributedpeer-review

Abstract

This paper investigates a novel approach to Quantum Key Distribution (QKD) enhanced by Quantum Projective Simulation (QPS), a quantum-inspired reinforcement learning model. By allowing agents to simulate future actions through quantum random walks over a memory network of quantum clips, QPS enables Alice and Bob to dynamically adapt their key distribution strategies based on past experiences. Simulation results show that the QPS-based QKD model achieves faster convergence to optimal strategies, improves resilience against eavesdropping attacks, and maintains a higher success probability compared to traditional QKD methods. These findings suggest that integrating QPS into QKD can significantly enhance the efficiency and security of quantum communication systems in dynamic and adversarial environments, positioning it as a promising candidate for future 6G networks. Index Terms - QKD, QPS, Quantum Random Walk, Artificial Intelligence.

Details

Original languageEnglish
Title of host publication2025 IEEE Future Networks World Forum
PublisherInstitute of Electrical and Electronics Engineers (IEEE)
ISBN (electronic)979-8-3315-9193-9
ISBN (print)979-8-3315-9194-6
Publication statusE-pub ahead of print - Jan 2026
Peer-reviewedYes

Publication series

SeriesIEEE Future Networks World Forum (FNWF)
ISSN2770-7660

Conference

Title2025 IEEE Future Networks World Forum
SubtitleBeyond Connectivity: 6g for a Sustainable and Intelligent Future
Abbreviated titleFNWF 2025
Duration10 - 12 November 2025
Website
LocationSheraton Grand Bengaluru Hotel & Convention Center
CityBangalore
CountryIndia

External IDs

ORCID /0000-0001-8469-9573/work/210352926