Theory requirements for SM Higgs and EW precision physics at the FCC-ee

High-precision experimental measurements of the properties of the Higgs boson at ∼ 125  GeV as well as electroweak precision observables such as the W -boson mass or the effective weak leptonic mixing angle are expected at future e + e - colliders such as the FCC-ee. This high anticipated precision...

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Veröffentlicht in:European physical journal plus 2021-09, Vol.136 (9), p.911, Article 911
Hauptverfasser: Heinemeyer, S., Jadach, S., Reuter, J.
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Reuter, J.
description High-precision experimental measurements of the properties of the Higgs boson at ∼ 125  GeV as well as electroweak precision observables such as the W -boson mass or the effective weak leptonic mixing angle are expected at future e + e - colliders such as the FCC-ee. This high anticipated precision has to be matched with theory predictions for the measured quantities at the same level of accuracy. We briefly summarize the status of these predictions within the standard model and of the tools that are used for their determination. We outline how the theory predictions will have to be improved in order to reach the required accuracy, and also comment on the simulation frameworks for the Higgs and EW precision program.
doi_str_mv 10.1140/epjp/s13360-021-01875-1
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subjects Accuracy
Applied and Technical Physics
Asymmetry
Atomic
Complex Systems
Condensed Matter Physics
Focus Point on A Future Higgs & Electroweak Factory (FCC): Challenges towards Discovery - Part III: Theoretical Challenges
Higgs bosons
Mathematical and Computational Physics
Molecular
Optical and Plasma Physics
Physics
Physics and Astronomy
Quarks
Radiation
Regular Article
Theoretical
title Theory requirements for SM Higgs and EW precision physics at the FCC-ee
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