Semi-quantum ring signature protocol based on multi-particle GHZ state
From MaRDI portal
Publication:6050251
DOI10.1007/s11128-023-04087-xMaRDI QIDQ6050251
Run-Ze He, Zhen-zhen Li, Qian-Hui Wang, Yajing Li, Zi-Chen Li
Publication date: 18 September 2023
Published in: Quantum Information Processing (Search for Journal in Brave)
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Cites Work
- Security of a semi-quantum protocol where reflections contribute to the secret key
- Authenticated semi-quantum key distributions without classical channel
- Quantum cryptography: public key distribution and coin tossing
- Multi-party quantum private comparison protocol based on \(d\)-dimensional entangled states
- High-efficient arbitrated quantum signature scheme based on cluster states
- Threshold proxy quantum signature scheme with threshold shared verification
- Authenticated semi-quantum key distribution protocol using Bell states
- Quantum identity authentication with single photon
- Quantum private comparison protocol based on cluster states
- Semi-quantum bi-signature scheme based on W states
- Offline arbitrated semi-quantum signature scheme with four-particle cluster state
- A verifiable \((k, n)\)-threshold dynamic quantum secret sharing scheme
- Multiparty mediated quantum secret sharing protocol
- Quantum secret sharing based on quantum information masking
- Afterpulse analysis for reference-frame-independent quantum key distribution
- A novel quantum ring signature scheme without using entangled states
- Reference-frame-independent quantum key distribution with modified coherent states
- Electronic voting scheme based on a quantum ring signature
- Quantum private comparison with a malicious third party
- Improved multiparty quantum private comparison based on quantum homomorphic encryption
- Mediated semi-quantum secure direct communication
- Device-independent quantum key distribution using random quantum states
- Rational quantum secret sharing scheme based on GHZ state
- A novel quantum identity authentication protocol without entanglement and preserving pre-shared key information
- Semiquantum key distribution
- Quantum Key Distribution with Classical Bob
- Measurement-device-independent semiquantum key distribution
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