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New Physics Agnostic Selections For New Physics Searches

We discuss a model-independent strategy for boosting new physics searches with the help of an unsupervised anomaly detection algorithm. Prior to a search, each input event is preprocessed by the algorithm - a variational autoencoder (VAE). Based on the loss assigned to each event, input data can be...

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Detalles Bibliográficos
Autores principales: Woźniak, Kinga Anna, Cerri, Olmo, Duarte, Javier M, Möller, Torsten, Ngadiuba, Jennifer, Nguyen, Thong Q, Pierini, Maurizio, Spiropulu, Maria, Vlimant, Jean-Roch
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1051/epjconf/202024506039
http://cds.cern.ch/record/2752192
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author Woźniak, Kinga Anna
Cerri, Olmo
Duarte, Javier M
Möller, Torsten
Ngadiuba, Jennifer
Nguyen, Thong Q
Pierini, Maurizio
Spiropulu, Maria
Vlimant, Jean-Roch
author_facet Woźniak, Kinga Anna
Cerri, Olmo
Duarte, Javier M
Möller, Torsten
Ngadiuba, Jennifer
Nguyen, Thong Q
Pierini, Maurizio
Spiropulu, Maria
Vlimant, Jean-Roch
author_sort Woźniak, Kinga Anna
collection CERN
description We discuss a model-independent strategy for boosting new physics searches with the help of an unsupervised anomaly detection algorithm. Prior to a search, each input event is preprocessed by the algorithm - a variational autoencoder (VAE). Based on the loss assigned to each event, input data can be split into a background control sample and a signal enriched sample. Following this strategy, one can enhance the sensitivity to new physics with no assumption on the underlying new physics signature. Our results show that a typical BSM search on the signal enriched group is more sensitive than an equivalent search on the original dataset.
id oai-inspirehep.net-1832230
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling oai-inspirehep.net-18322302022-08-17T13:56:41Zdoi:10.1051/epjconf/202024506039http://cds.cern.ch/record/2752192engWoźniak, Kinga AnnaCerri, OlmoDuarte, Javier MMöller, TorstenNgadiuba, JenniferNguyen, Thong QPierini, MaurizioSpiropulu, MariaVlimant, Jean-RochNew Physics Agnostic Selections For New Physics SearchesComputing and ComputersParticle Physics - ExperimentWe discuss a model-independent strategy for boosting new physics searches with the help of an unsupervised anomaly detection algorithm. Prior to a search, each input event is preprocessed by the algorithm - a variational autoencoder (VAE). Based on the loss assigned to each event, input data can be split into a background control sample and a signal enriched sample. Following this strategy, one can enhance the sensitivity to new physics with no assumption on the underlying new physics signature. Our results show that a typical BSM search on the signal enriched group is more sensitive than an equivalent search on the original dataset.FERMILAB-CONF-20-633-CMSoai:inspirehep.net:18322302020
spellingShingle Computing and Computers
Particle Physics - Experiment
Woźniak, Kinga Anna
Cerri, Olmo
Duarte, Javier M
Möller, Torsten
Ngadiuba, Jennifer
Nguyen, Thong Q
Pierini, Maurizio
Spiropulu, Maria
Vlimant, Jean-Roch
New Physics Agnostic Selections For New Physics Searches
title New Physics Agnostic Selections For New Physics Searches
title_full New Physics Agnostic Selections For New Physics Searches
title_fullStr New Physics Agnostic Selections For New Physics Searches
title_full_unstemmed New Physics Agnostic Selections For New Physics Searches
title_short New Physics Agnostic Selections For New Physics Searches
title_sort new physics agnostic selections for new physics searches
topic Computing and Computers
Particle Physics - Experiment
url https://dx.doi.org/10.1051/epjconf/202024506039
http://cds.cern.ch/record/2752192
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