Experimentation at a muon collider

Fuente: arXiv
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Autores principales: Casarsa, Massimo, Lucchesi, Donatella, Sestini, Lorenzo
Formato: Preprint
Publicado: 2023
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author Casarsa, Massimo
Lucchesi, Donatella
Sestini, Lorenzo
author_facet Casarsa, Massimo
Lucchesi, Donatella
Sestini, Lorenzo
contents Experimental activities involving multi-TeV muon collisions are a relatively recent endeavor. The community has limited experience in designing detectors for lepton interactions at center-of-mass energies of 10 TeV and beyond. This review provides a short overview of the machine characteristics and outlines potential sources of beam-induced background that could impact the detector performance. The strategy for mitigating the effects of beam-induced background on the detector at $\sqrt{s}=3$ TeV is discussed, focusing on the machine-detector interface, detector design, and the implementation of reconstruction algorithms. The physics potential at this center-of-mass energy is evaluated using a detailed detector simulation that incorporates the effects of beam-induced background. This evaluation concerns the Higgs boson couplings and the Higgs field potential sensitivity, that then are used to get confidence on the expectations at 10 TeV. The physics and detector requirements for an experiment at $\sqrt{s}=10$ TeV, outlined here, form the foundation for the initial detector concept at that center-of-mass energy .
format Preprint
id arxiv_https___arxiv_org_abs_2311_03280
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Experimentation at a muon collider
Casarsa, Massimo
Lucchesi, Donatella
Sestini, Lorenzo
High Energy Physics - Experiment
Instrumentation and Detectors
Experimental activities involving multi-TeV muon collisions are a relatively recent endeavor. The community has limited experience in designing detectors for lepton interactions at center-of-mass energies of 10 TeV and beyond. This review provides a short overview of the machine characteristics and outlines potential sources of beam-induced background that could impact the detector performance. The strategy for mitigating the effects of beam-induced background on the detector at $\sqrt{s}=3$ TeV is discussed, focusing on the machine-detector interface, detector design, and the implementation of reconstruction algorithms. The physics potential at this center-of-mass energy is evaluated using a detailed detector simulation that incorporates the effects of beam-induced background. This evaluation concerns the Higgs boson couplings and the Higgs field potential sensitivity, that then are used to get confidence on the expectations at 10 TeV. The physics and detector requirements for an experiment at $\sqrt{s}=10$ TeV, outlined here, form the foundation for the initial detector concept at that center-of-mass energy .
title Experimentation at a muon collider
topic High Energy Physics - Experiment
Instrumentation and Detectors
url https://arxiv.org/abs/2311.03280