Qibocal: an open-source framework for calibration of self-hosted quantum devices

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Pasquale, Andrea, Pedicillo, Edoardo, Cereijo, Juan, Ramos-Calderer, Sergi, Candido, Alessandro, Palazzo, Gabriele, Carobene, Rodolfo, Gobbo, Marco, Efthymiou, Stavros, Tan, Yuanzheng Paul, Roth, Ingo, Robbiati, Matteo, Wilkens, Jadwiga, Orgaz-Fuertes, Alvaro, Fuentes-Ruiz, David, Giachero, Andrea, Brito, Frederico, Latorre, José Ignacio, Carrazza, Stefano
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866910678150807552
author Pasquale, Andrea
Pedicillo, Edoardo
Cereijo, Juan
Ramos-Calderer, Sergi
Candido, Alessandro
Palazzo, Gabriele
Carobene, Rodolfo
Gobbo, Marco
Efthymiou, Stavros
Tan, Yuanzheng Paul
Roth, Ingo
Robbiati, Matteo
Wilkens, Jadwiga
Orgaz-Fuertes, Alvaro
Fuentes-Ruiz, David
Giachero, Andrea
Brito, Frederico
Latorre, José Ignacio
Carrazza, Stefano
author_facet Pasquale, Andrea
Pedicillo, Edoardo
Cereijo, Juan
Ramos-Calderer, Sergi
Candido, Alessandro
Palazzo, Gabriele
Carobene, Rodolfo
Gobbo, Marco
Efthymiou, Stavros
Tan, Yuanzheng Paul
Roth, Ingo
Robbiati, Matteo
Wilkens, Jadwiga
Orgaz-Fuertes, Alvaro
Fuentes-Ruiz, David
Giachero, Andrea
Brito, Frederico
Latorre, José Ignacio
Carrazza, Stefano
contents Calibration of quantum devices is fundamental to successfully deploy quantum algorithms on current available quantum hardware. We present Qibocal, an open-source software library to perform calibration and characterization of superconducting quantum devices within the Qibo framework. Qibocal completes the Qibo middleware framework by providing all necessary tools to easily (re)calibrate self-hosted quantum platforms. After presenting the layout and the features of the library, we give an overview on some of the protocols implemented to perform single and two-qubit gates calibration. Finally, we present applications involving recalibration and monitoring of superconducting platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2410_00101
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Qibocal: an open-source framework for calibration of self-hosted quantum devices
Pasquale, Andrea
Pedicillo, Edoardo
Cereijo, Juan
Ramos-Calderer, Sergi
Candido, Alessandro
Palazzo, Gabriele
Carobene, Rodolfo
Gobbo, Marco
Efthymiou, Stavros
Tan, Yuanzheng Paul
Roth, Ingo
Robbiati, Matteo
Wilkens, Jadwiga
Orgaz-Fuertes, Alvaro
Fuentes-Ruiz, David
Giachero, Andrea
Brito, Frederico
Latorre, José Ignacio
Carrazza, Stefano
Quantum Physics
Calibration of quantum devices is fundamental to successfully deploy quantum algorithms on current available quantum hardware. We present Qibocal, an open-source software library to perform calibration and characterization of superconducting quantum devices within the Qibo framework. Qibocal completes the Qibo middleware framework by providing all necessary tools to easily (re)calibrate self-hosted quantum platforms. After presenting the layout and the features of the library, we give an overview on some of the protocols implemented to perform single and two-qubit gates calibration. Finally, we present applications involving recalibration and monitoring of superconducting platforms.
title Qibocal: an open-source framework for calibration of self-hosted quantum devices
topic Quantum Physics
url https://arxiv.org/abs/2410.00101