Ultrafast quantum key distribution using fully parallelized quantum channelsOpen Access

Terhaar, Robin; Rödiger, Jasper; Häußler, Matthias; Wahl, Michael; Gehring, Helge; Wolff, Martin A.; Beutel, Fabian; Hartmann, Wladick; Walter, Nicolai; Hanke, Jonas; Hanne, Peter; Walenta, Nino; Diedrich, Maximilian; Perlot, Nicolas; Tillmann, Max; Röhlicke, Tino; Ahangarianabhari, Mahdi; Schuck, Carsten; Pernice, Wolfram H.P.

Research article (journal) | Peer reviewed

Abstract

The field of quantum information processing offers secure communication protected by the laws of quantum mechanics and is on the verge of finding wider application for information transfer of sensitive data. To overcome the obstacle of inadequate cost-efficiency, extensive research is being done on the many components required for high data throughput using quantum key distribution (QKD). Aiming for an application-oriented solution, we report on the realization of a multichannel QKD system for plug-and-play high-bandwidth secure communication at telecom wavelength. For this purpose, a rack-sized multichannel superconducting nanowire single photon detector (SNSPD) system, as well as a highly parallelized time-correlated single photon counting (TCSPC) unit have been developed and linked to an FPGA-controlled QKD evaluation setup allowing for continuous operation and achieving high secret key rates using a coherent-one-way protocol.

Details about the publication

JournalOptics Express (Opt. Express)
Volume31
Issue2
Page range2675-2688
StatusPublished
Release year2023
Language in which the publication is writtenEnglish
KeywordsQuantum Key Distribution, Nanophotonics, Single Photon Detectors, Quantum Technology

Authors from the University of Münster

Beutel, Fabian
Gehring, Helge
Hartmann, Wladislaw
Häußler, Matthias
Pernice, Wolfram
Schuck, Carsten
Terhaar, Robin
Walter, Nicolai
Wolff, Martin Axel

Projects the publication originates from

Duration: 01/09/2016 - 31/03/2022
Type of project: Own resources project