In this proceedings we present Qibocal, an open-source software package for calibration and characterization of quantum processing units (QPUs) based on the Qibo framework. Qibocal is specifically designed for self-hosted QPUs and provides the groundwork to easily develop, deploy and distribute characterization and calibration routines for all levels of hardware abstraction. Qibocal is based on a modular QPU platform agnostic approach and it provides a general purpose toolkit for superconducting qubits with the possibility of extensions to other quantum technologies. After motivating the need for such a module, we explain the program's flow and show examples of actual use for QPU calibration. We also showcase additional features provided by the library including automatic report generation and live plotting.

Towards an open-source framework to perform quantum calibration and characterization / A. Pasquale, S. Efthymiou, S. Ramos-Calderer, J. Wilkens, I. Roth, S. Carrazza. ((Intervento presentato al 21. convegno ACAT 2022 International Workshop on Advanced Computing and Analysis Techniques in Physics Research tenutosi a Bari : 24-28 ottobre nel 2022.

Towards an open-source framework to perform quantum calibration and characterization

A. Pasquale
Primo
;
S. Carrazza
Ultimo
2023

Abstract

In this proceedings we present Qibocal, an open-source software package for calibration and characterization of quantum processing units (QPUs) based on the Qibo framework. Qibocal is specifically designed for self-hosted QPUs and provides the groundwork to easily develop, deploy and distribute characterization and calibration routines for all levels of hardware abstraction. Qibocal is based on a modular QPU platform agnostic approach and it provides a general purpose toolkit for superconducting qubits with the possibility of extensions to other quantum technologies. After motivating the need for such a module, we explain the program's flow and show examples of actual use for QPU calibration. We also showcase additional features provided by the library including automatic report generation and live plotting.
18-mar-2023
Quantum Physics; Quantum Physics; Physics - Computational Physics
Settore FIS/02 - Fisica Teorica, Modelli e Metodi Matematici
http://arxiv.org/abs/2303.10397v1
Towards an open-source framework to perform quantum calibration and characterization / A. Pasquale, S. Efthymiou, S. Ramos-Calderer, J. Wilkens, I. Roth, S. Carrazza. ((Intervento presentato al 21. convegno ACAT 2022 International Workshop on Advanced Computing and Analysis Techniques in Physics Research tenutosi a Bari : 24-28 ottobre nel 2022.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/959084
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