The FCC-ee offers powerful opportunities to determine the Higgs boson parameters, exploiting over 10(6) e(+)e(-) -> ZH events and almost 10(5) WW -> H events at centre-ofmass energies around 240 and 365GeV. This essay spotlights the important measurements of the ZH production cross section and of the Higgs boson mass. The measurement of the total ZH cross section is an essential input to the absolute determination of the HZZ coupling-a "standard candle" that can be used by all other measurements, including those made at hadron colliders-at the per-mil level. A combination of the measured cross sections at the two different centre-of-mass energies further provides the first evidence for the trilinear Higgs self-coupling, and possibly its first observation if the cross section measurement can be made accurate enough. The determination of the Higgs boson mass with a precision significantly better than the Higgs boson width (4.1MeV in the standard model) is a prerequisite to either constrain or measure the electron Yukawa coupling via direct e(+)e(-) -> H production at root s = 125GeV. Approaching the statistical limit of 0.1% and O(1) MeV on the ZH cross section and the Higgs boson mass, respectively, sets highly demanding requirements on accelerator operation (ZH threshold scan, centre-of-mass energy measurement), detector design (lepton momentum resolution, hadronic final state reconstruction performance), theoretical calculations, and analysis techniques (efficiency and purity optimization with modern tools, constrained kinematic fits, control of systematic uncertainties). These challenges are examined in turn in this essay

Azzurri, P., Bernardi, G., Braibant, S., D'Enterria, D., Eysermans, J., Janot, P., et al. (2021). A special Higgs challenge: measuring the mass and production cross section with ultimate precision at FCC-ee. THE EUROPEAN PHYSICAL JOURNAL PLUS, 137(1), 1-10 [10.1140/epjp/s13360-021-02202-4].

A special Higgs challenge: measuring the mass and production cross section with ultimate precision at FCC-ee

Braibant, S;
2021

Abstract

The FCC-ee offers powerful opportunities to determine the Higgs boson parameters, exploiting over 10(6) e(+)e(-) -> ZH events and almost 10(5) WW -> H events at centre-ofmass energies around 240 and 365GeV. This essay spotlights the important measurements of the ZH production cross section and of the Higgs boson mass. The measurement of the total ZH cross section is an essential input to the absolute determination of the HZZ coupling-a "standard candle" that can be used by all other measurements, including those made at hadron colliders-at the per-mil level. A combination of the measured cross sections at the two different centre-of-mass energies further provides the first evidence for the trilinear Higgs self-coupling, and possibly its first observation if the cross section measurement can be made accurate enough. The determination of the Higgs boson mass with a precision significantly better than the Higgs boson width (4.1MeV in the standard model) is a prerequisite to either constrain or measure the electron Yukawa coupling via direct e(+)e(-) -> H production at root s = 125GeV. Approaching the statistical limit of 0.1% and O(1) MeV on the ZH cross section and the Higgs boson mass, respectively, sets highly demanding requirements on accelerator operation (ZH threshold scan, centre-of-mass energy measurement), detector design (lepton momentum resolution, hadronic final state reconstruction performance), theoretical calculations, and analysis techniques (efficiency and purity optimization with modern tools, constrained kinematic fits, control of systematic uncertainties). These challenges are examined in turn in this essay
2021
Azzurri, P., Bernardi, G., Braibant, S., D'Enterria, D., Eysermans, J., Janot, P., et al. (2021). A special Higgs challenge: measuring the mass and production cross section with ultimate precision at FCC-ee. THE EUROPEAN PHYSICAL JOURNAL PLUS, 137(1), 1-10 [10.1140/epjp/s13360-021-02202-4].
Azzurri, P; Bernardi, G; Braibant, S; D'Enterria, D; Eysermans, J; Janot, P; Li, A; Perez, E
File in questo prodotto:
File Dimensione Formato  
s13360-021-02202-4.pdf

accesso aperto

Tipo: Versione (PDF) editoriale / Version Of Record
Licenza: Licenza per Accesso Aperto. Creative Commons Attribuzione (CCBY)
Dimensione 774.66 kB
Formato Adobe PDF
774.66 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/954604
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 11
  • ???jsp.display-item.citation.isi??? 13
  • OpenAlex 13
social impact