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Denoising Graph Super-Resolution towards Improved Collider Event Reconstruction

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arxiv 2409.16052 v2 pith:VJ6FKMMN submitted 2024-09-24 hep-ex cs.LG

classification hep-excs.LG
keywords reconstructionsuper-resolutionqualitycolliderdemonstrateimprovedparticlealternative
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In preparation for Higgs factories and energy-frontier facilities, future colliders are moving toward high-granularity calorimeters to improve reconstruction quality. However, the cost and construction complexity of such detectors is substantial, making software-based approaches like super-resolution an attractive alternative. This study explores integrating super-resolution techniques into an LHC-like reconstruction pipeline to effectively enhance calorimeter granularity and suppress noise. We find that this software preprocessing step significantly improves reconstruction quality without physical changes to the detector. To demonstrate its impact, we propose a novel transformer-based particle flow model that offers improved particle reconstruction quality and interpretability. Our results demonstrate that super-resolution can be readily applied at collider experiments.

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Cited by 1 Pith paper

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

  1. GLOW: A Unified Particle Flow Transformer

    hep-ex 2025-08 conditional novelty 6.0 of 10

    GLOW combines masked-attention transformer decoding with energy-fraction incidence supervision, improving simulated CLIC jet energy resolution by about 15% over HGPflow.

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