Towards efficient and secure quantum-classical communication networks

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Zeng, Pei, Bandyopadhyay, Debayan, Méndez, José A. Méndez, Bitner, Nolan, Kolar, Alexander, Solomon, Michael T., Heremans, F. Joseph, Awschalom, David D., Jiang, Liang, Liu, Junyu
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866909472546357248
author Zeng, Pei
Bandyopadhyay, Debayan
Méndez, José A. Méndez
Bitner, Nolan
Kolar, Alexander
Solomon, Michael T.
Heremans, F. Joseph
Awschalom, David D.
Jiang, Liang
Liu, Junyu
author_facet Zeng, Pei
Bandyopadhyay, Debayan
Méndez, José A. Méndez
Bitner, Nolan
Kolar, Alexander
Solomon, Michael T.
Heremans, F. Joseph
Awschalom, David D.
Jiang, Liang
Liu, Junyu
contents The rapid advancement of quantum technologies calls for the design and deployment of quantum-safe cryptographic protocols and communication networks. There are two primary approaches to achieving quantum-resistant security: quantum key distribution (QKD) and post-quantum cryptography (PQC). While each offers unique advantages, both have drawbacks in practical implementation. In this work, we introduce the pros and cons of these protocols and explore how they can be combined to achieve a higher level of security and/or improved performance in key distribution. We hope our discussion inspires further research into the design of hybrid cryptographic protocols for quantum-classical communication networks.
format Preprint
id arxiv_https___arxiv_org_abs_2411_01081
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Towards efficient and secure quantum-classical communication networks
Zeng, Pei
Bandyopadhyay, Debayan
Méndez, José A. Méndez
Bitner, Nolan
Kolar, Alexander
Solomon, Michael T.
Heremans, F. Joseph
Awschalom, David D.
Jiang, Liang
Liu, Junyu
Quantum Physics
Artificial Intelligence
Cryptography and Security
The rapid advancement of quantum technologies calls for the design and deployment of quantum-safe cryptographic protocols and communication networks. There are two primary approaches to achieving quantum-resistant security: quantum key distribution (QKD) and post-quantum cryptography (PQC). While each offers unique advantages, both have drawbacks in practical implementation. In this work, we introduce the pros and cons of these protocols and explore how they can be combined to achieve a higher level of security and/or improved performance in key distribution. We hope our discussion inspires further research into the design of hybrid cryptographic protocols for quantum-classical communication networks.
title Towards efficient and secure quantum-classical communication networks
topic Quantum Physics
Artificial Intelligence
Cryptography and Security
url https://arxiv.org/abs/2411.01081