Quantum key distribution using hBN single-photon emitters at a 40 MHz clock rate
Tapşın, Ömer S and Ağlarcı, Furkan and Pousa, Roberto G and Oi, Daniel K L and Gündoğan, Mustafa and Ateş, Serkan (2026) Quantum key distribution using hBN single-photon emitters at a 40 MHz clock rate. Quantum Science and Technology, 11 (2). 025058. ISSN 2058-9565 (https://doi.org/10.1088/2058-9565/ae679c)
Preview |
Text.
Filename: Taps_n-etal-QST-2026-Quantum-key-distribution-using-hBN-single-photon-emitters.pdf
Final Published Version License:
Download (1MB)| Preview |
Abstract
Room-temperature (RT) solid-state quantum emitters are essential for building practical and scalable quantum communication systems, yet their application has been critically hindered by the slow operational speeds of corresponding modulation technologies. In this work, we overcome this key performance bottleneck. We demonstrate a quantum key distribution (QKD) system using a single defect in hexagonal boron nitride (hBN) with dynamic polarization encoding at a 40 MHz clock rate, an order of magnitude faster than previous demonstrations with similar sources. Implementing the B92 protocol, our system yields a secure key rate of 7 kbps in the finite-key regime with a quantum bit error rate of 6.49%, establishing a new performance benchmark for RT single-photon QKD. Furthermore, to chart a path beyond the limits of direct transmission, we present the first quantitative performance analysis of hBN spin-defects as quantum repeater nodes. Overall, our high-speed experimental demonstration, supported by a foundational analysis of the system architecture, suggests that hBN defects represent a promising and technically feasible platform for scalable, quantum communication.
ORCID iDs
Tapşın, Ömer S, Ağlarcı, Furkan, Pousa, Roberto G, Oi, Daniel K L
ORCID: https://orcid.org/0000-0003-0965-9509, Gündoğan, Mustafa and Ateş, Serkan;
-
-
Item type: Article ID code: 96352 Dates: DateEvent27 May 2026Published1 May 2026AcceptedSubjects: Science > Physics Department: Faculty of Science > Physics
University of Strathclyde > University of StrathclydeDepositing user: Pure Administrator Date deposited: 27 May 2026 09:58 Last modified: 07 Jul 2026 08:28 URI: https://strathprints.strath.ac.uk/id/eprint/96352
Tools
Tools






