High-capacity three-party quantum secret sharing with single photons in both the polarization and the spatial-mode degrees of freedom
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Publication:1955880
DOI10.1007/s10773-012-1418-xzbMath1268.81055OpenAlexW2142357167MaRDI QIDQ1955880
Yugai Huang, Bin Gu, Xia Fang, Hai-Bin Wang, De-sheng Fu
Publication date: 19 June 2013
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-012-1418-x
Cryptography (94A60) Quantum optics (81V80) Quantum coherence, entanglement, quantum correlations (81P40) Quantum cryptography (quantum-theoretic aspects) (81P94)
Related Items (11)
\(d\)-dimensional quantum state sharing with adversary structure ⋮ Multi-photon self-error-correction hyperentanglement distribution over arbitrary collective-noise channels ⋮ Implementation of quantum secret sharing and quantum binary voting protocol in the IBM quantum computer ⋮ Proactive quantum secret sharing ⋮ Improvement of high-capacity three-party quantum secret sharing with single photons in both the polarization and the spatial-mode degrees of freedom ⋮ Robust quantum secure communication with spatial quantum states of single photons ⋮ High-capacity quantum summation with single photons in both polarization and spatial-mode degrees of freedom ⋮ \((t,n)\) threshold quantum secret sharing using the phase shift operation ⋮ Multi-dimensional quantum state sharing based on quantum Fourier transform ⋮ Limited resource semi-quantum secret sharing based on multi-level systems ⋮ Improved deterministic \(N\)-to-one joint remote preparation of an arbitrary qubit via EPR pairs
Cites Work
- High-capacity three-party quantum secret sharing with hyperentanglement
- Quantum dialogue
- Bidirectional quantum secret sharing and secret splitting with polarized single photons
- An efficient quantum secret sharing scheme with Einstein-Podolsky-Rosen pairs
- Bidirectional Quantum Secure Direct Communication Network Protocol with Hyperentanglement
- Quantum Dialogue by Using Non-Symmetric Quantum Channel
- DOUBLING THE CAPACITY OF QUANTUM KEY DISTRIBUTION BY USING BOTH POLARIZATION AND DIFFERENTIAL PHASE SHIFT
- Quantum cryptography based on Bell’s theorem
- Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states
- Quantum cryptography without Bell’s theorem
- Quantum secret sharing
- Quantum cryptography
- Quantum dialogue using non-maximally entangled states based on entanglement swapping
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