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The security of a cryptosystem in most cases relies on the key being kept secret. Quan- tum key distribution (QKD) enables two authenticated parties without other prior information to share a perfectly secure key. A trivial method to obtain a secret key is to use QKD to reestablish a new key for each message. In this book we study method to update the keys. We call this method quantum key evolution (QKE). The QKE provides a new secret key in each round of the protocol. Therefore, a new secret key is established for next round of protocol execution.

Produktbeschreibung
The security of a cryptosystem in most cases relies on the key being kept secret. Quan- tum key distribution (QKD) enables two authenticated parties without other prior information to share a perfectly secure key. A trivial method to obtain a secret key is to use QKD to reestablish a new key for each message. In this book we study method to update the keys. We call this method quantum key evolution (QKE). The QKE provides a new secret key in each round of the protocol. Therefore, a new secret key is established for next round of protocol execution.
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Autorenporträt
Yuan Jiun Wang received his Ph.D. degrees in Computer Science and Engineering from National Sun Yat-sen University in 2012. His research focuses on network and information security, quantum cryptography and quantum computing.