Skip to main navigation Skip to search Skip to main content

Controlled Quantum Network Coding without Loss of Information

  • Xiu Bo Pan
  • , Xiu Bo Chen*
  • , Gang Xu
  • , Haseeb Ahmad
  • , Tao Shang
  • , Zong Peng Li
  • , Yi Xian Yang
  • *Corresponding author for this work
  • Beijing University of Posts and Telecommunications
  • North China University of Technology
  • National Textile University
  • Huawei Technologies Co., Ltd.
  • Wuhan University

Research output: Contribution to journalArticlepeer-review

Abstract

Quantum network coding is used to solve the congestion problem in quantum communication, which will promote the transmission efficiency of quantum information and the total throughput of quantum network. We propose a novel controlled quantum network coding without information loss. The effective transmission of quantum states on the butterfly network requires the consent form a third-party controller Charlie. Firstly, two pairs of threeparticle non-maximum entangled states are pre-shared between senders and controller. By adding auxiliary particles and local operations, the senders can predict whether a certain quantum state can be successfully transmittedwithin the butterfly network based on the Z- { |0_ , |1_} basis. Secondly, when transmission fails upon prediction, the quantum statewill not be lost, and it will still be held by the sender. Subsequently, the controller Charlie re-prepares another three-particle non-maximum entangled state to start a new round. When the predicted transmission is successful, the quantum state can be transmitted successfully within the butterfly network. If the receiver wants to receive the effective quantum state, the quantum measurements from Charlie are needed. Thirdly, when the transmission fails, Charlie does not need to integrate the X- {|+_ , |−_} basis to measure its own particles, by which quantum resources are saved. Charlie not only controls the effective transmission of quantum states, but also the usage of classical and quantum channels. Finally, the implementation of the quantum circuits, as well as a flow chart and safety analysis of our scheme, is proposed.

Original languageEnglish
Pages (from-to)3967-3979
Number of pages13
JournalComputers, Materials and Continua
Volume69
Issue number3
DOIs
StatePublished - 2021

Keywords

  • Controlled quantum network coding
  • Perfect transmission
  • Quantum teleportation
  • Without information loss

Fingerprint

Dive into the research topics of 'Controlled Quantum Network Coding without Loss of Information'. Together they form a unique fingerprint.

Cite this