Physics Performance and Detector Requirements at an Asymmetric Higgs Factory

Fuente: arXiv
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Main Authors: Laudrain, Antoine, Behnke, Ties, Berggren, Carl Mikael, Buesser, Karsten, Gaede, Frank, Grojean, Christophe, List, Benno, List, Jenny, Reuter, Jürgen, Schwanenberger, Christian
Format: Preprint
Published: 2024
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author Laudrain, Antoine
Behnke, Ties
Berggren, Carl Mikael
Buesser, Karsten
Gaede, Frank
Grojean, Christophe
List, Benno
List, Jenny
Reuter, Jürgen
Schwanenberger, Christian
author_facet Laudrain, Antoine
Behnke, Ties
Berggren, Carl Mikael
Buesser, Karsten
Gaede, Frank
Grojean, Christophe
List, Benno
List, Jenny
Reuter, Jürgen
Schwanenberger, Christian
contents The Hybrid Asymmetric Linear Higgs Factory (HALHF) proposes a shorter and cheaper design for a future Higgs factory. It reaches a $\sqrt{s} = 250$ GeV using a 500 GeV electron beam accelerated by an electron-driven plasma wake-field, and a conventionally-accelerated 31 GeV positron beam. Assuming plasma acceleration R&D challenges are solved in a timely manner, the asymmetry of the collisions brings additional challenges regarding the detector and the physics analyses, from forward boosted topologies and beam backgrounds. This contribution will detail the impact of beam parameters on beam-induced backgrounds, and provide a first look at what modification compared to e.g. the ILD can improve the physics performance at such a facility. The studies will be benchmarked against some flagship Higgs Factory analyses for comparison.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14313
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Physics Performance and Detector Requirements at an Asymmetric Higgs Factory
Laudrain, Antoine
Behnke, Ties
Berggren, Carl Mikael
Buesser, Karsten
Gaede, Frank
Grojean, Christophe
List, Benno
List, Jenny
Reuter, Jürgen
Schwanenberger, Christian
High Energy Physics - Experiment
Instrumentation and Detectors
The Hybrid Asymmetric Linear Higgs Factory (HALHF) proposes a shorter and cheaper design for a future Higgs factory. It reaches a $\sqrt{s} = 250$ GeV using a 500 GeV electron beam accelerated by an electron-driven plasma wake-field, and a conventionally-accelerated 31 GeV positron beam. Assuming plasma acceleration R&D challenges are solved in a timely manner, the asymmetry of the collisions brings additional challenges regarding the detector and the physics analyses, from forward boosted topologies and beam backgrounds. This contribution will detail the impact of beam parameters on beam-induced backgrounds, and provide a first look at what modification compared to e.g. the ILD can improve the physics performance at such a facility. The studies will be benchmarked against some flagship Higgs Factory analyses for comparison.
title Physics Performance and Detector Requirements at an Asymmetric Higgs Factory
topic High Energy Physics - Experiment
Instrumentation and Detectors
url https://arxiv.org/abs/2411.14313