Lightweight Mediated Semi-Quantum Key Distribution Protocol with a Dishonest Third Party based on Bell States
arXiv:1909.02788 · doi:10.1038/s41598-021-02614-3
Abstract
The mediated semi-quantum key distribution (MSQKD) protocol is an important research issue that lets two classical participants share secret keys securely between each other with the help of a third party (TP). However, in the existing MSQKD protocols, there are two improvable issues, namely (1) the classical participants must be equipped with expensive detectors to avoid Trojan horse attacks and (2) the trustworthiness level of TP must be honest. To the best of our knowledge, none of the existing MSQKD protocols can resolve both these issues. Therefore, this study takes Bell states as the quantum resource to propose a MSQKD protocol, in which the classical participants do not need a Trojan horse detector and the TP is dishonest. Furthermore, the proposed protocol is shown to be secure against well-known attacks and the classical participants only need two quantum capabilities. Therefore, in comparison to the existing MSQKD protocols, the proposed protocol is better practical.
References in corpus (11)
- Experimental quantum teleportation
- Optical Quantum Computing
- Ground-to-satellite quantum teleportation
- Improving the security of multiparty quantum secret sharing against Trojan horse attack
- Eavesdropping on the "ping-pong" type quantum communication protocols with invisible photon
- Efficient quantum key distribution over a collective noise channel
- Quantum Key Distribution with Classical Bob
- Mediated Semi-Quantum Key Distribution
- Security proof for QKD systems with threshold detectors
- Comment on "Quantum Key Distribution with Classical Bob"
- Semi-quantum private comparison protocol under an almost-dishonest third party