@inproceedings{807bb01aa1df4cbbaa4b0b4461f7becd,
title = "Quantum transmission integrity mechanism for indirect communication",
abstract = "Quantum communication networks need to securely transmit a quantum frame from source to destination. In the wireless communication network, source and destination have two types of connection: direct or indirect communication. In the direct connected mode, the transmission security can be achieved by using a quantum key distribution. In the indirect connected mode, it is a difficult problem to deal with the unsafe routing path from source to destination due to eavesdropping and manin- the-middle attack. In this paper, we propose a quantum mechanism that designs a flexible quantum frame to achieve transmission integrity. This frame uses a quantum correlated key to let the receiver has the capability to judge whether the received quantum frame is secure or not. This mechanism provides a new solution to solve the transmission security in the unsafe routing path.",
keywords = "Eavesdropping, Flexible quantum frame, Man-in-the-middle attack, Quantum correlated key",
author = "Lin, \{Tien Sheng\} and Tsai, \{I. Ming\} and Kuo, \{Sy Yen\}",
year = "2009",
doi = "10.1109/ICCCN.2009.5235303",
language = "英语",
isbn = "9781424445813",
series = "Proceedings - International Conference on Computer Communications and Networks, ICCCN",
booktitle = "2009 Proceedings of 18th International Conference on Computer Communications and Networks, ICCCN 2009",
note = "2009 18th International Conference on Computer Communications and Networks, ICCCN 2009 ; Conference date: 03-08-2009 Through 06-08-2009",
}