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Learning the latent structure of collider events

High Energy Physics - Phenomenology 2020-12-02 v1 High Energy Physics - Experiment

Abstract

We describe a technique to learn the underlying structure of collider events directly from the data, without having a particular theoretical model in mind. It allows to infer aspects of the theoretical model that may have given rise to this structure, and can be used to cluster or classify the events for analysis purposes. The unsupervised machine-learning technique is based on the probabilistic (Bayesian) generative model of Latent Dirichlet Allocation. We pair the model with an approximate inference algorithm called Variational Inference, which we then use to extract the latent probability distributions describing the learned underlying structure of collider events. We provide a detailed systematic study of the technique using two example scenarios to learn the latent structure of di-jet event samples made up of QCD background events and either ttˉt\bar{t} or hypothetical W(ϕWW)WW' \to (\phi \to WW) W signal events.

Keywords

Cite

@article{arxiv.2005.12319,
  title  = {Learning the latent structure of collider events},
  author = {Barry M. Dillon and Darius A. Faroughy and Jernej F. Kamenik and Manuel Szewc},
  journal= {arXiv preprint arXiv:2005.12319},
  year   = {2020}
}

Comments

38 pages, 23 figures

R2 v1 2026-06-23T15:48:02.856Z