Protection of noisy multipartite entangled states of superconducting qubits via universally robust dynamical decoupling schemes

Fuente: arXiv
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Main Authors: Gautam, Akanksha, Arvind, Dorai, Kavita
Format: Preprint
Published: 2021
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author Gautam, Akanksha
Arvind
Dorai, Kavita
author_facet Gautam, Akanksha
Arvind
Dorai, Kavita
contents We demonstrate the efficacy of the universally robust dynamical decoupling (URDD) sequence to preserve multipartite maximally entangled quantum states on a cloud based quantum computer via the IBM platform. URDD is a technique that can compensate for experimental errors and simultaneously protect the state against environmental noise. To further improve the performance of the URDD sequence, phase randomization (PR) as well as correlated phase randomization (CPR) techniques are added to the basic URDD sequence. The performance of the URDD sequence is quantified by measuring the entanglement in several noisy entangled states (two-qubit triplet state, three-qubit GHZ state, four-qubit GHZ state and four-qubit cluster state) at several time points. Our experimental results demonstrate that the URDD sequence is successfully able to protect noisy multipartite entangled states and its performance is substantially improved by adding the phase randomization and correlated phase randomization sequences.
format Preprint
id arxiv_https___arxiv_org_abs_2112_10417
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Protection of noisy multipartite entangled states of superconducting qubits via universally robust dynamical decoupling schemes
Gautam, Akanksha
Arvind
Dorai, Kavita
Quantum Physics
We demonstrate the efficacy of the universally robust dynamical decoupling (URDD) sequence to preserve multipartite maximally entangled quantum states on a cloud based quantum computer via the IBM platform. URDD is a technique that can compensate for experimental errors and simultaneously protect the state against environmental noise. To further improve the performance of the URDD sequence, phase randomization (PR) as well as correlated phase randomization (CPR) techniques are added to the basic URDD sequence. The performance of the URDD sequence is quantified by measuring the entanglement in several noisy entangled states (two-qubit triplet state, three-qubit GHZ state, four-qubit GHZ state and four-qubit cluster state) at several time points. Our experimental results demonstrate that the URDD sequence is successfully able to protect noisy multipartite entangled states and its performance is substantially improved by adding the phase randomization and correlated phase randomization sequences.
title Protection of noisy multipartite entangled states of superconducting qubits via universally robust dynamical decoupling schemes
topic Quantum Physics
url https://arxiv.org/abs/2112.10417