Cryptanalysis and improvement in controlled quantum dialogue using cluster states
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Publication:670029
DOI10.1007/S11128-019-2214-9zbMath1417.81064OpenAlexW2917234028MaRDI QIDQ670029
Publication date: 15 March 2019
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-019-2214-9
Cryptography (94A60) Quantum coherence, entanglement, quantum correlations (81P40) Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum coding (general) (81P70) Quantum control (81Q93) Quantum cryptography (quantum-theoretic aspects) (81P94)
Related Items (7)
An authenticated controlled quantum dialogue protocol using double-linked GHZ-like states in cross-domain setting ⋮ Comment on: ``Controlled quantum secure direct communication with authentication protocol based on five-particle cluster state and classical XOR operation ⋮ Fault tolerant controlled quantum dialogue with logical Brown states against collective noise ⋮ Passive attack to the controlled secure direct communication with seven-qubit entangled states protocol ⋮ Controlled and authenticated quantum dialogue protocol based on Grover's algorithm ⋮ Security loopholes in the controlled quantum dialogue robust against conspiring users protocol ⋮ Novel controlled quantum dialogue protocols without information leakage
Cites Work
- Unnamed Item
- Quantum dialogue protocols over collective noise using entanglement of GHZ state
- Controlled quantum dialogue robust against conspiring users
- Quantum cryptography: public key distribution and coin tossing
- Cryptanalysis and improvement of three-particle deterministic secure and high bit-rate direct quantum communication protocol
- Controlled quantum dialogue using cluster states
- Quantum secure direct communication with optimal quantum superdense coding by using general four-qubit states
- Quantum cryptography
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