Szczegóły publikacji

Opis bibliograficzny

Quantum key distribution: a networking perspective / Miralem Mehic, Marcin NIEMIEC, Stefan Rass, Jiajun Ma, Momtchil Peev, Alejandro Aguado, Vicente Martin, Stefan Schauer, Andreas Poppe, Christoph Pacher, Miroslav Voznak // ACM Computing Surveys ; ISSN 0360-0300. — 2020 — vol. 53 no. 5, art. no. 96, s. 96:1-96:41. — Bibliogr. s. 96:32–96:41, Abstr. — Publikacja dostępna online od: 2020-09-28. — M. Niemiec - dod. afiliacja: VSB - Technical University of Ostrava

Autorzy (11)

  • Mehic Miralem
  • AGHNiemiec Marcin
  • Rass Stefan
  • Ma Jiajun
  • Peev Momtchil
  • Aguado Alejandro
  • Martin Vicente
  • Schauer Stefan
  • Poppe Andreas
  • Pacher Christoph
  • Voznak Miroslav

Słowa kluczowe

network organizationcryptographyquantum key distributionsecurity

Dane bibliometryczne

ID BaDAP130562
Data dodania do BaDAP2020-10-12
Tekst źródłowyURL
DOI10.1145/3402192
Rok publikacji2020
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaACM Computing Surveys

Abstract

The convergence of quantum cryptography with applications used in everyday life is a topic drawing attention from the industrial and academic worlds. The development of quantum electronics has led to the practical achievement of quantum devices that are already available on the market and waiting for their first application on a broader scale. A major aspect of quantum cryptography is the methodology of Quantum Key Distribution (QKD), which is used to generate and distribute symmetric cryptographic keys between two geographically separate users using the principles of quantum physics. In previous years, several successful QKD networks have been created to test the implementation and interoperability of different practical solutions. This article surveys previously applied methods, showing techniques for deploying QKD networks and current challenges of QKD networking. Unlike studies focusing on optical channels and optical equipment, this survey focuses on the network aspect by considering network organization, routing and signaling protocols, simulation techniques, and a software-defined QKD networking approach.

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artykuł
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On mixing of quantum key distribution and post-quantum cryptographic keys: min-entropy bounds, provisioning policies, and network-oriented trade-offs / Miralem Mehic, Stefan Rass, Sergej Jakovlev, Marcin NIEMIEC, Peppino Fazio, Miroslav Voznak // IEEE Journal on Selected Areas in Communications ; ISSN  0733-8716 . — 2026 — vol. 44, s. 5669–5679. — Bibliogr. s. 5678–5679, Abstr. — Publikacja dostępna online od: 2026-08-11. — M. Niemiec - dod. afiliacja: Klaipeda University, Lithuania
fragment książki
#128637Data dodania: 18.5.2020
Error reconciliation in Quantum Key Distribution protocols / Miralem Mehic, Marcin NIEMIEC, Harun Siljak, Miroslav Voznak // W: Reversible computation: extending horizons of computing : selected results of the COST Action IC1405 / eds. Irek Ulidowski, [et al.]. — Cham : Springer Nature Switzerland AG, cop. 2020. — (Lecture Notes in Computer Science ; ISSN 0302-9743 ; vol. 12070. Theoretical Computer Science and General Issues ; ISSN 0302-9743). — ISBN: 978-3-030-47360-0; e-ISBN: 978-3-030-47361-7. — S. 222–236. — Bibliogr. s. 233–235, Abstr. — M. Niemiec - dod. afiliacja: Department of Telecommunications, VSB-Technical University of Ostrava