$\texttt{HEPfit}$: a Code for the Combination of Indirect and Direct Constraints on High Energy Physics Models

Fuente: arXiv
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Main Authors: de Blas, Jorge, Chowdhury, Debtosh, Ciuchini, Marco, Coutinho, Antonio M., Eberhardt, Otto, Fedele, Marco, Franco, Enrico, di Cortona, Giovanni Grilli, Miralles, Victor, Mishima, Satoshi, Paul, Ayan, Penuelas, Ana, Pierini, Maurizio, Reina, Laura, Silvestrini, Luca, Valli, Mauro, Watanabe, Ryoutaro, Yokozaki, Norimi
Format: Preprint
Published: 2019
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author de Blas, Jorge
Chowdhury, Debtosh
Ciuchini, Marco
Coutinho, Antonio M.
Eberhardt, Otto
Fedele, Marco
Franco, Enrico
di Cortona, Giovanni Grilli
Miralles, Victor
Mishima, Satoshi
Paul, Ayan
Penuelas, Ana
Pierini, Maurizio
Reina, Laura
Silvestrini, Luca
Valli, Mauro
Watanabe, Ryoutaro
Yokozaki, Norimi
author_facet de Blas, Jorge
Chowdhury, Debtosh
Ciuchini, Marco
Coutinho, Antonio M.
Eberhardt, Otto
Fedele, Marco
Franco, Enrico
di Cortona, Giovanni Grilli
Miralles, Victor
Mishima, Satoshi
Paul, Ayan
Penuelas, Ana
Pierini, Maurizio
Reina, Laura
Silvestrini, Luca
Valli, Mauro
Watanabe, Ryoutaro
Yokozaki, Norimi
contents $\texttt{HEPfit}$ is a flexible open-source tool which, given the Standard Model or any of its extensions, allows to $\textit{i)}$ fit the model parameters to a given set of experimental observables; $\textit{ii)}$ obtain predictions for observables. $\texttt{HEPfit}$ can be used either in Monte Carlo mode, to perform a Bayesian Markov Chain Monte Carlo analysis of a given model, or as a library, to obtain predictions of observables for a given point in the parameter space of the model, allowing $\texttt{HEPfit}$ to be used in any statistical framework. In the present version, around a thousand observables have been implemented in the Standard Model and in several new physics scenarios. In this paper, we describe the general structure of the code as well as models and observables implemented in the current release.
format Preprint
id arxiv_https___arxiv_org_abs_1910_14012
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle $\texttt{HEPfit}$: a Code for the Combination of Indirect and Direct Constraints on High Energy Physics Models
de Blas, Jorge
Chowdhury, Debtosh
Ciuchini, Marco
Coutinho, Antonio M.
Eberhardt, Otto
Fedele, Marco
Franco, Enrico
di Cortona, Giovanni Grilli
Miralles, Victor
Mishima, Satoshi
Paul, Ayan
Penuelas, Ana
Pierini, Maurizio
Reina, Laura
Silvestrini, Luca
Valli, Mauro
Watanabe, Ryoutaro
Yokozaki, Norimi
High Energy Physics - Phenomenology
High Energy Physics - Experiment
$\texttt{HEPfit}$ is a flexible open-source tool which, given the Standard Model or any of its extensions, allows to $\textit{i)}$ fit the model parameters to a given set of experimental observables; $\textit{ii)}$ obtain predictions for observables. $\texttt{HEPfit}$ can be used either in Monte Carlo mode, to perform a Bayesian Markov Chain Monte Carlo analysis of a given model, or as a library, to obtain predictions of observables for a given point in the parameter space of the model, allowing $\texttt{HEPfit}$ to be used in any statistical framework. In the present version, around a thousand observables have been implemented in the Standard Model and in several new physics scenarios. In this paper, we describe the general structure of the code as well as models and observables implemented in the current release.
title $\texttt{HEPfit}$: a Code for the Combination of Indirect and Direct Constraints on High Energy Physics Models
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/1910.14012