Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We analyze security effects of using a key obtained from QC for authentication purposes in later rounds of QC. In particular, the eavesdropper gains partial knowledge on the key in QC that may have an effect on the security of the authentication in the later round. Our initial analysis indicates that this partial knowledge has little effect on the authentication part of the system, in agreement with previous results on the issue. However, when taking the full QC protocol into account, the picture is different. By accessing the quantum channel used in QC, the attacker can change the message to be authenticated. This together with partial knowledg...
The peculiar properties of quantum mechanics enable possibilities not allowed by classical physics. ...
We propose an information-theoretically secure encryption scheme for classical messages with quantum...
Problem statement: In previous researches, we investigated the security of communication channels, w...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Authentication is a well-studied area of classical cryptography: a sender A and a receiver B sharing...
Quantum key growing, often called quantum cryptography or quantum key distribution, is a method usin...
Authentication is a well-studied area of classical cryp-tography: a senderA and a receiver B sharing...
Classical cryptography offers solutions for various applications like distributing keys, encryption,...
Quantum cryptography exploits principles of quantum physics for the secure processing of information...
Abstract — Quantum cryptography offers a way of key agreement, which is unbreakable by any external ...
We give a new class of security definitions for authentication in the quantum setting. These definit...
Abstract. We study the security of a specific authentication procedure of interest in the context of...
The peculiar properties of quantum mechanics enable possibilities not allowed by classical physics. ...
We propose an information-theoretically secure encryption scheme for classical messages with quantum...
Problem statement: In previous researches, we investigated the security of communication channels, w...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Unconditionally secure message authentication is an important part of Quantum Cryptography (QC). We ...
Authentication is a well-studied area of classical cryptography: a sender A and a receiver B sharing...
Quantum key growing, often called quantum cryptography or quantum key distribution, is a method usin...
Authentication is a well-studied area of classical cryp-tography: a senderA and a receiver B sharing...
Classical cryptography offers solutions for various applications like distributing keys, encryption,...
Quantum cryptography exploits principles of quantum physics for the secure processing of information...
Abstract — Quantum cryptography offers a way of key agreement, which is unbreakable by any external ...
We give a new class of security definitions for authentication in the quantum setting. These definit...
Abstract. We study the security of a specific authentication procedure of interest in the context of...
The peculiar properties of quantum mechanics enable possibilities not allowed by classical physics. ...
We propose an information-theoretically secure encryption scheme for classical messages with quantum...
Problem statement: In previous researches, we investigated the security of communication channels, w...