Controlled Cyclic and Bidirectional Hybrid Quantum Communication of Arbitrary Two‐Qubit States

Author:

Gong Li1ORCID,Chen Xiubo1ORCID,Xu Gang23,Li Zongpeng45

Affiliation:

1. Information Security Center State Key Laboratory of Networking and Switching Technology Beijing University of Posts and Telecommunications Beijing 100876 China

2. Advanced Cryptography and System Security Key Laboratory of Sichuan Province Chengdu 610025 China

3. School of Information Science and Technology North China University of Technology Beijing 100144 China

4. Institute for Network Science and Cyberspace Tsinghua University Beijing 100084 China

5. Quan Cheng Laboratory Jinan 250100 China

Abstract

AbstractHybrid quantum communication with the combination of quantum teleportation and remote preparation is hopeful for promoting the development of quantum networks and enriching the diversity of quantum network communication. To improve the communication efficiency and enhance the scalability of the quantum networks, a meaningful protocol for controlled cyclic and bidirectional hybrid quantum communication of arbitrary two‐qubit states is proposed, which allows quantum information to be transmitted simultaneously in both directions among multiple participants. With the permission of one controller, each observer can simultaneously transmit arbitrary known two‐qubit states and unknown ones to their adjacent observers, by implementing remote preparation and quantum teleportation in the clockwise and counterclockwise directions. Furthermore, the participants just carry out some quantum measurements and recovery operations to achieve the communication target, and the desired states can be attained with a unit success probability, thus the protocol is deterministic. Finally, some comparisons are also made with other similar protocols, which shows that the protocol is better in qubit efficiency and communication capacity.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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