A quantum secret sharing scheme using orbital angular momentum onto multiple spin states based on Fibonacci compression encoding
Version 2 2024-06-06, 00:30Version 2 2024-06-06, 00:30
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journal contribution
posted on 2024-06-06, 00:30authored byH Lai, MX Luo, YJ Xu, J Pieprzyk, Jun Zhang, Lei Pan, MA Orgun
Since the use of a quantum channel is very expensive for transmitting large messages, it is vital to develop an effective quantum compression encoding scheme that is easy to implement. Given that, with the single-photon spin-orbit entanglement, we propose a quantum secret sharing scheme using orbital angular momentum onto multiple spin states based on Fibonacci compression encoding. In our proposed scheme, we can represent the frequency of any secret message which is typically collection of bits encodings of text or integers as a bitstring using the base Fibonacci sequence, which is encoded multiple spin states for secret shares transmitted to participants. We demonstrate that Fibonacci compression encoding carries excellent properties that enable us to achieve more robust quantum secret sharing schemes with fewer number of photons.
History
Journal
Communications in theoretical physics
Volume
70
Pagination
384-390
Location
Bristol, Eng.
ISSN
0253-6102
Language
eng
Publication classification
C1 Refereed article in a scholarly journal
Copyright notice
2018, Chinese Physical Society and IOP Publishing Ltd