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Application of Particle Transformer to quark flavor tagging in the ILC project

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arxiv 2410.11322 v2 pith:N7KM4GTW submitted 2024-10-15 hep-ex

classification hep-ex
keywords taggingflavorpartanalysishiggsparticletransformercollider
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

International Linear Collider (ILC) is a next-generation $e^+e^-$ linear collider to explore Beyond-Standard-Models by precise measurements of Higgs bosons. Jet flavor tagging plays a vital role in the ILC project by identification of $H\to b\bar{b},\,c\bar{c},\,g\bar{g},\,s\bar{s}$ to measure Higgs coupling constants and of $HH\to b\bar{b}b\bar{b}$ and $b\bar{b}WW$ which are the main channels to measure the Higgs self-coupling constant. Jet flavor tagging relies on a large amount of jet information such as particle momenta, energies, and impact parameters, obtained from trajectories of particles within a jet. Since jet flavor tagging is a classification task based on massive amounts of information, machine learning techniques have been utilized for faster and more efficient analysis for the last several decades. Particle Transformer (ParT) is a machine learning model based on Transformer architecture developed for jet analysis, including jet flavor tagging. In this study, we apply ParT to ILD full simulation data to improve the efficiency of jet flavor tagging. Our research focused on evaluating the performance of ParT compared to that of the previously used flavor tagging software, LCFIPlus. We will also report the status of the performance of strange tagging on ILD full simulation dataset using ParT, which can be applied to the analysis of Higgs-strange coupling.

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Cited by 2 Pith papers

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  1. Generating particle physics Lagrangians with transformers

    cs.LG 2025-01 conditional novelty 6.0 of 10

    A BART transformer can generate gauge-invariant Lagrangians from field content with over 90% accuracy on in-distribution data, though its performance drops on realistic Standard Model benchmarks.

  2. The ILD Detector: A Versatile Detector for an Electron-Positron Collider at Energies up to 1 TeV

    hep-ex 2025-06 conditional novelty 3.0 of 10

    The ILD concept paper presents a particle-flow-optimized detector design, its performance requirements, technology options, and readiness for both linear and circular electron-positron colliders up to 1 TeV.

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