Quantum stretching protocol to share states among three nonlocal qubits

被引:0
作者
Mario Mastriani
机构
[1] Florida International University,Knight Foundation School of Computing and Information Sciences
来源
Optical and Quantum Electronics | 2023年 / 55卷
关键词
Entanglement; Non-locality; Quantum communication; Retro causality;
D O I
暂无
中图分类号
学科分类号
摘要
A protocol for the quantum stretching of an arbitrary state among three nonlocal qubits is proposed in this paper. When this protocol is used for making a quantum stretching of a computational basis state (CBS), automatically the same CBS is shared for the three qubits, and this fact can be interpreted as a nonlocal post-processing procedure to transmit such state between sender and receiver without a classical disambiguation channel like that employed in the quantum teleportation protocol. This study has the corresponding theoretical deduction of the proposed protocol, and a couple of implementations, where the first one is made on a quantum simulator, while the second one is carried out on an optical table. Finally, explanations are tested from four points of view to justify the operation of the protocol within Special Relativity without resorting to faster-than-light arguments.
引用
收藏
相关论文
共 60 条
  • [11] Brassard G(1989)Quantum field theory cannot provide faster-than-light communication Found of Phys. Lett. 2 777-780
  • [12] Crépeau C(1935)Can quantum-mechanical description of physical reality be considered complete? Phys. Rev. 47 661-663
  • [13] Jozsa R(1991)Quantum cryptography based on Bell's theorem Phys. Rev. Lett. 67 95-100
  • [14] Bohm D(1988)Experiments of the EPR type involving CP-violation do not allow faster-than-light communication between distant observers Europhys. Lett. 6 2219-197
  • [15] Cacciapuoti AS(2019)Opportunistic entanglement distribution for the quantum internet Sci Rep 9 115-1179
  • [16] Caleffi M(2020)Entanglement accessibility measures for the quantum internet Quant Info Proc 19 191-942
  • [17] Tafuri F(1976)Black holes and thermodynamics Phys. Rev. D 13 1171-320
  • [18] Caleffi M(1982)FLASH-A superluminal communicator based upon a new kind of quantum measurement Found. Phys. 12 865-1030
  • [19] Chandra D(2009)Cosmological implications of quantum entanglement in the multiverse Quantum Entanglement. Rev. Mod. Phys. 81 316-811
  • [20] Cuomo D(2015)Cool horizons for entangled black holes Phys. Lett. B 751 1023-803