Two Quantum Proxy Blind Signature Schemes Based on Controlled Quantum Teleportation
arXiv:2210.14438 · doi:10.3390/e24101421
Abstract
We present a scheme for teleporting an unknown, two-particle entangled state with a message from a sender (Alice) to a receiver (Bob) via a six-particle entangled channel. We also present another scheme for teleporting an unknown one-particle entangled state with a message transmitted in a two-way form between the same sender and receiver via a five-qubit cluster state. One-way hash functions, Bell-state measurements, and unitary operations are adopted in these two schemes. Our schemes use the physical characteristics of quantum mechanics to implement delegation, signature, and verification processes. Moreover, a quantum key distribution protocol and a one-time pad are adopted in these schemes.
8 pages; no figure
References in corpus (7)
- Improving the security of multiparty quantum secret sharing against Trojan horse attack
- Quantum key distribution over 122 km of standard telecom fiber
- Revisiting the security of quantum dialogue and bidirectional quantum secure direct communication
- Quantum secure direct communication based on order rearrangement of single photons
- Post-processing of the oblivious key in quantum private queries
- Dense-Coding Attack on Three-Party Quantum Key Distribution Protocols
- Consistency of shared reference frames should be reexamined