Zeng et al., 2024 - Google Patents
Practical hybrid PQC-QKD protocols with enhanced security and performanceZeng et al., 2024
View PDF- Document ID
- 8029693339331195065
- Author
- Zeng P
- Bandyopadhyay D
- Méndez J
- Bitner N
- Kolar A
- Solomon M
- Ye Z
- Rozpędek F
- Zhong T
- Heremans F
- Awschalom D
- Jiang L
- Liu J
- Publication year
- Publication venue
- arXiv preprint arXiv:2411.01086
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Snippet
Quantum resistance is vital for emerging cryptographic systems as quantum technologies continue to advance towards large-scale, fault-tolerant quantum computers. Resistance may be offered by quantum key distribution (QKD), which provides information-theoretic security …
- 238000004891 communication 0 abstract description 15
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- H04L9/083—Key transport or distribution, i.e. key establishment techniques where one party creates or otherwise obtains a secret value, and securely transfers it to the other(s) involving central third party, e.g. key distribution center [KDC] or trusted third party [TTP]
- H04L9/0833—Key transport or distribution, i.e. key establishment techniques where one party creates or otherwise obtains a secret value, and securely transfers it to the other(s) involving central third party, e.g. key distribution center [KDC] or trusted third party [TTP] involving conference or group key
- H04L9/0836—Key transport or distribution, i.e. key establishment techniques where one party creates or otherwise obtains a secret value, and securely transfers it to the other(s) involving central third party, e.g. key distribution center [KDC] or trusted third party [TTP] involving conference or group key using tree structure or hierarchical structure
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- H04L9/0841—Key agreement, i.e. key establishment technique in which a shared key is derived by parties as a function of information contributed by, or associated with, each of these involving Diffie-Hellman or related key agreement protocols
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