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Aspects of Higgs Physics at a s=3 TeV Muon Collider with detailed detector simulation

European Physical Journal C, ISSN: 1434-6052, Vol: 85, Issue: 3
2025
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Metrics Details

  • Citations
    2
    • Citation Indexes
      2
      • CrossRef
        2

Article Description

The Muon Collider is one of the most promising future collider facilities with the potential to reach multi-TeV center-of-mass energy and high luminosity. Due to the significant Higgs boson production cross section in muon-antimuon collisions at such high energies, the collider offers an excellent opportunity for in-depth exploration of Higgs boson properties. It holds the capability to significantly advance our understanding of the Higgs sector to a very high level of precision. However, the presence of beam-induced background resulting from the decay of the beam muons poses unique challenges for detector development and event reconstruction. In this paper, the prospects for measuring various Higgs boson properties at a center-of-mass energy of 3 TeV are presented, using a detailed detector simulation in a realistic environment. The study demonstrates the feasibility of achieving high precision results with the current state-of-the-art detector design. In addition, the paper discusses the detector requirements necessary to achieve this level of accuracy.

Bibliographic Details

Paolo Andreetto; Laura Buonincontri; Luca Giambastiani; Alessio Gianelle; Donatella Lucchesi; Leonardo Palombini; Davide Zuliani; Nazar Bartosik; Nadia Pastrone; Daniele Calzolari; Leo Mareso; Anton Lechner; Vieri Candelise; Massimo Casarsa; Carlo Giraldin; Luca Castelli; Mauro Chiesa; Anna Colaleo; Rosamaria Venditti; Angela Zaza; Giacomo Da Molin; Matthew Forslund; Patrick Meade; Karol Krizka; Sergo Jindariani; Paola Mastrapasqua; Alessandro Montella; Simone Pagan Griso; Lorenzo Sestini

Springer Science and Business Media LLC

Engineering; Physics and Astronomy

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