Quantum Entanglement with Self-stabilizing Token Ring for Fault-tolerant Distributed Quantum Computing System

09/23/2022
by   Jehn-Ruey Jiang, et al.
0

This paper shows how to construct quantum entanglement states of n qubits based on a self-stabilizing token ring algorithm. The entangled states can be applied to the fields of the quantum network, quantum Internet, distributed quantum computing, and quantum cloud. To the best of our knowledge, this is the first attempt to construct quantum entanglement based on the self-stabilizing algorithm. By the quantum circuit implementation based on the IBM Quantum Experience platform, it is demonstrated that the construction indeed can achieve specific n qubit entangled states, which in turn can be used to circulate a token in a quantum network or quantum Internet for building a distributed quantum computing system (DQCS). The built DQCS is fault-tolerant in the sense that it can tolerate transient faults such as occasional errors of entangled quantum states.

READ FULL TEXT
research
10/25/2022

Entanglement Purification with Quantum LDPC Codes and Iterative Decoding

Recent constructions of quantum low-density parity-check (QLDPC) codes p...
research
03/15/2023

VENUS: A Geometrical Representation for Quantum State Visualization

Visualizations have played a crucial role in helping quantum computing u...
research
03/19/2022

A Quantum Algorithm for Network Reliability

Building a network that is resilient to a component failure is vital. Ou...
research
05/04/2023

The Quantum Internet: an Efficient Stabilizer states Distribution Scheme

Quantum networks constitute a major part of quantum technologies. They w...
research
12/01/2021

(Causal)-Activation of Complex Entanglement Structures in Quantum Networks

Entanglement represents "the" key resource for several applications of q...
research
07/05/2023

Hybrid Ground-State Quantum Algorithms based on Neural Schrödinger Forging

Entanglement forging based variational algorithms leverage the bi-partit...
research
12/12/2019

Bell Diagonal and Werner state generation: entanglement, non-locality, steering and discord on the IBM quantum computer

We shortly review Bell-diagonal and Werner states of two quantum bits an...

Please sign up or login with your details

Forgot password? Click here to reset