Three-party semi-quantum key agreement protocol
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Publication:2300859
DOI10.1007/S10773-019-04288-0zbMath1433.81075OpenAlexW3004402616MaRDI QIDQ2300859
Kong-Ni Zhu, Nan-Run Zhou, Yun-Qian Wang
Publication date: 28 February 2020
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-019-04288-0
four-particle cluster statesemi-quantum communicationquantum key distributionsemi-quantum key agreement
Cryptography (94A60) Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum coding (general) (81P70) Quantum cryptography (quantum-theoretic aspects) (81P94)
Related Items (17)
Private comparison protocol for multiple semi-quantum users based on Bell states ⋮ Mutual weak quantum users key agreement protocol based on semi-honest quantum server ⋮ Quantum secret sharing protocol using GHZ state: implementation on IBM qiskit ⋮ Semi-quantum key agreement protocol using W states ⋮ Semi-quantum private comparison protocol of size relation with \(d\)-dimensional Bell states ⋮ Multiparty semiquantum key agreement with \(d\)-level single-particle states ⋮ Measurement-device-independent quantum key agreement based on entanglement swapping ⋮ Improvement and flexible multiparty extension of semi-quantum key agreement protocol ⋮ Semi-honest three-party mutual authentication quantum key agreement protocol based on GHZ-like state ⋮ A novel three-party mutual authentication quantum key agreement protocol with GHZ states ⋮ Long distance measurement-device-independent three-party quantum key agreement ⋮ A mediated semi-quantum protocol for millionaire problem based on high-dimensional Bell states ⋮ Single-state multi-party semiquantum key agreement protocol based on multi-particle GHZ entangled states ⋮ Mutual authentication quantum key agreement protocol based on Bell states ⋮ Two-party secure semiquantum summation against the collective-dephasing noise ⋮ Detector-device-independent quantum key agreement based on single-photon Bell state measurement ⋮ Semi-quantum voting protocol
Cites Work
- Authenticated semi-quantum direct communication protocols using Bell states
- Efficient multi-party quantum key agreement by cluster states
- Security of a semi-quantum protocol where reflections contribute to the secret key
- Multiparty quantum key agreement with single particles
- Quantum key agreement against collective decoherence
- Two-party quantum key agreement with four-qubit cluster states
- Novel multiparty quantum key agreement protocol with GHZ states
- Restricted attacks on semi-quantum key distribution protocols
- Semiquantum key distribution without invoking the classical party's measurement capability
- Multi-party semi-quantum key agreement with delegating quantum computation
- Quantum key agreement protocols with four-qubit cluster states
- Semi-quantum dialogue based on single photons
- Authenticated semi-quantum key distribution protocol using Bell states
- Semi-quantum communication: protocols for key agreement, controlled secure direct communication and dialogue
- Semi-quantum key distribution protocols with GHZ states
- Multi-party quantum key agreement with Bell states and Bell measurements
- Security of a single-state semi-quantum key distribution protocol
- Trojan-horse attacks on quantum key distribution with classical bob
- Semi-quantum identification
- Cryptanalysis of a multi-party quantum key agreement protocol with single particles
- Cryptanalysis on authenticated semi-quantum key distribution protocol using Bell states
- Improvements on ``multiparty quantum key agreement with single particles
- Quantum Key Distribution with Classical Bob
- QUANTUM KEY DISTRIBUTION WITH CLASSICAL ALICE
- Distillation of secret key and entanglement from quantum states
- Mediated Semi‐Quantum Key Distribution Without Invoking Quantum Measurement
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