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Fast $b$-tagging at the high-level trigger of the ATLAS experiment in LHC Run 3

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arxiv 2306.09738 v2 pith:KENDO4GE submitted 2023-06-16 hep-ex

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

The ATLAS experiment relies on real-time hadronic jet reconstruction and $b$-tagging to record fully hadronic events containing $b$-jets. These algorithms require track reconstruction, which is computationally expensive and could overwhelm the high-level-trigger farm, even at the reduced event rate that passes the ATLAS first stage hardware-based trigger. In LHC Run 3, ATLAS has mitigated these computational demands by introducing a fast neural-network-based $b$-tagger, which acts as a low-precision filter using input from hadronic jets and tracks. It runs after a hardware trigger and before the remaining high-level-trigger reconstruction. This design relies on the negligible cost of neural-network inference as compared to track reconstruction, and the cost reduction from limiting tracking to specific regions of the detector. In the case of Standard Model $HH \rightarrow b\bar{b}b\bar{b}$, a key signature relying on $b$-jet triggers, the filter lowers the input rate to the remaining high-level trigger by a factor of five at the small cost of reducing the overall signal efficiency by roughly 2%.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Jet Substructure Probe on Scalar Leptoquark Models via Top Polarization

    hep-ph 2025-05 conditional novelty 6.0 of 10

    A simulation study projects up to 5.4 sigma discovery significance for scalar leptoquarks at the HL-LHC and up to 3.2 sigma separation between the S3 and R2 models using a BDT score.

  2. Phenomenology of scalar particles assisted by machine learning

    hep-ph 2025-07 reject novelty 4.0 of 10

    The thesis projects 5-sigma discovery reaches at the HL-LHC for charged Higgs pairs, Flavon decays, and h->eµ, using BDT-based event selection in the 2HDM-III and Froggatt-Nielsen models.

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