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Jet substructure observables for jet quenching in Quark Gluon Plasma: a Machine Learning driven analysis

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arxiv 2304.07196 v2 pith:RVRY6BYV submitted 2023-04-14 hep-ph nucl-exnucl-th

classification hep-phnucl-exnucl-th
keywords observablesquenchingsubstructureeffectsfindgluonjetslearning
verification ladder T0 review T1 audit T2 compute T3 formal
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We present a survey of a comprehensive set of jet substructure observables commonly used to study the modifications of jets resulting from interactions with the Quark Gluon Plasma in Heavy Ion Collisions. The \jewel{} event generator is used to produce simulated samples of quenched and unquenched jets. Three distinct analyses using Machine Learning techniques on the jet substructure observables have been performed to identify both linear and non-linear relations between the observables, and to distinguish the Quenched and Unquenched jet samples. We find that most of the observables are highly correlated, and that their information content can be captured by a small set of observables. We also find that the correlations between observables are resilient to quenching effects and that specific pairs of observables exhaust the full sensitivity to quenching effects. The code, the datasets, and instructions on how to reproduce this work are also provided.

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    OmniFold-HI, an ML unfolding algorithm that handles large backgrounds and high-dimensional auxiliary observables, is derived, shown equivalent to iterative Bayesian unfolding, and demonstrated to improve jet-substruct...

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