Asymmetric bidirectional cyclic controlled quantum teleportation in noisy environment

被引:0
作者
Jie Xu
Ri-Gui Zhou
机构
[1] Shanghai Maritime University,College of Information Engineering
[2] Shanghai Maritime University,Research Center of Intelligent Information Processing and Quantum Intelligent Computing
来源
Quantum Information Processing | / 22卷
关键词
Bidirectional cyclic quantum teleportation; Asymmetric; Muti-output quantum teleportation; Seventeen-qubit entangled state; Fidelity; Intrinsic efficiency;
D O I
暂无
中图分类号
学科分类号
摘要
This paper is aimed to design a protocol which enable asymmetric exchange of quantum states between every two adjacent communicating parties under the supervision of a controller in circular quantum communication and analyze how the noise environment affects the process of this protocol. We propose a novel protocol for four-party asymmetric bidirectional cyclic controlled quantum teleportation based on multi-output quantum teleportation, utilizing a seventeen-qubit entangled state as the quantum channel. Moreover, we extended the proposed four-party scheme from three communicators to m(m>3)\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$m(m>3)$$\end{document} communicators, providing flexibility for each communicator to choose one of the two distinct multi-output modes for communication. Additionally, the quantum circuit was designed for experimental implementation of the protocol on the IBM Quantum platform. Lastly, the four-party scheme is analyzed in four noisy environments with bit-flip noise, phase-flip noise, amplitude damping and phase-damping. Furthermore, we give a comparison with previous similar schemes in terms of intrinsic efficiency and achieved method, which illustrates the superiority of our protocol. Regarding experimental implementation, we successfully validated the accuracy and feasibility of the proposed four-party scheme. In the noise analysis, we discovered a correlation between the fidelity of teleported quantum states and both the parameter of the desired quantum state and the decoherence rate. This correlation is attributed to the inherent nature of the four types of noise.
引用
收藏
相关论文
共 141 条
[21]  
Gupta S(2018)Protecting quantum memories using coherent parity check codes Quant. Sci. Technol. 3 035010-undefined
[22]  
Majumdar AS(2018)Quantum artificial Life in an IBM quantum computer Sci Rep. 8 14793-undefined
[23]  
Long GL(2017)Cyclic quantum teleportation Quant. Inf. Process. 16 201-undefined
[24]  
Liu XS(2019)Controlled cyclic quantum teleportation of an arbitrary two-qubit entangled state by using a Ten-Qubit entangled state Int. J. Theor. Phys. 58 1541-undefined
[25]  
Deng F-G(2021)A scheme for controlled cyclic asymmetric remote state preparation in noisy environment Appl. Sci. 11 1405-undefined
[26]  
Long GL(2021)Asymmetric cyclic controlled quantum teleportation by using Nine-Qubit entangled state Int. J. Theor. Phys. 60 3435-undefined
[27]  
Liu X-S(2019)Cyclic and bidirectional quantum teleportation via pseudo multi-qubit states IEEE Access. 7 42445-undefined
[28]  
Sheng Y-B(2019)Cyclic hybrid double-channel quantum communication via bell-state and GHZ-state in noisy environments IEEE Access. 7 80530-undefined
[29]  
Zhou L(2020)Quantum double-direction cyclic controlled communication via a thirteen-qubit entangled state Quant. Inf Process. 19 120-undefined
[30]  
Long G-L(2022)Multi-party controlled cyclic hybrid quantum communication protocol in noisy environment Quant. Inf Process. 21 375-undefined