Efficient semiquantum key distribution based on single photons in both polarization and spatial-mode degrees of freedom
arXiv:2110.03456 · doi:10.1007/s11128-022-03457-1
Abstract
In this paper, we propose an efficient semiquantum key distribution (SQKD) protocol which is based on single photons in both polarization and spatial-mode degrees of freedom. This protocol is feasible for a quantum communicant distributing a random private key to a classical communicant. This protocol needn't require the classical communicant to use any quantum memory or unitary operation equipment. We validate the complete robustness of the transmissions of single photons between two communicants. It turns out that during these transmissions, if Eve wants not to be detected by two communicants, she will obtain nothing useful about the final shared key bits. Compared with Boyer et al.'s famous pioneering SQKD protocol (Phys Rev Lett, 2007, 99:140501), this protocol has double quantum communication capacity, as one single photon with two degrees of freedom for generating the key bits can carry two private bits; and this protocol has higher quantum communication efficiency, as it consumes less qubits for establishing a private key of the same length. Compared with the only existing SQKD protocol with single photons in two degrees of freedom (Int J Theor Phys, 2020, 59: 2807), this protocol has higher quantum communication efficiency.
15 pages, 1 figure, 1 table
References in corpus (5)
- Improving the security of secure direct communication based on secret transmitting order of particles
- Eavesdropping on the "ping-pong" type quantum communication protocols with invisible photon
- Quantum Key Distribution with Classical Bob
- Mediated Semi-Quantum Key Distribution
- Semi-quantum key distribution with single photons in both polarization and spatial-mode degrees of freedom
Cited by in corpus (8)
- A novel multi-party semiquantum private comparison protocol of size relationship with d-dimensional single-particle states
- Single-state multi-party semiquantum key agreement protocol based on multi-particle GHZ entangled states
- Three-party secure semiquantum summation without entanglement among quantum user and classical users
- Multi-party quantum private comparison of size relationship with two third parties based on d-dimensional Bell states
- Semiquantum secret sharing by using x-type states
- Semiquantum private comparison based on Bell states without quantum measurements from the classical user
- Semiquantum private comparison via cavity QED
- A novel two-party semiquantum key distribution protocol based on GHZ-like states