Two-party quantum private comparison with four-particle entangled states
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Publication:2239670
DOI10.1007/S10773-021-04880-3OpenAlexW3183958243MaRDI QIDQ2239670
Publication date: 5 November 2021
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-021-04880-3
Foundations, quantum information and its processing, quantum axioms, and philosophy (81Pxx) Communication, information (94Axx) Applications of quantum theory to specific physical systems (81Vxx)
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Cites Work
- Unnamed Item
- New quantum private comparison protocol using EPR pairs
- A protocol for the quantum private comparison of equality with \(\chi \)-type state
- Quantum private comparison using genuine four-particle entangled states
- New quantum private comparison protocol using \(\chi \)-type state
- Quantum cryptography: public key distribution and coin tossing
- Quantum private comparison based on \(\chi\)-type entangled states
- Eavesdropping on the two-way quantum communication protocols with invisible photons
- Comment on quantum private comparison protocols with a semi-honest third party
- Cryptanalysis and improvement of the quantum private comparison protocol with semi-honest third party
- Two-party quantum private comparison with five-qubit entangled states
- Quantum Private Comparison of Equal Information Based on Highly Entangled Six-Qubit Genuine State
- CRYPTANALYSIS AND IMPROVEMENTS FOR THE QUANTUM PRIVATE COMPARISON PROTOCOL USING EPR PAIRS
- Secure quantum private comparison
- An efficient two-party quantum private comparison protocol with decoy photons and two-photon entanglement
- Quantum secret sharing
- Quantum cryptography
- THE ENHANCEMENT OF ZHOU et al.'s QUANTUM SECRET SHARING PROTOCOL
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