Author: Faus-Golfe, A.
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THYAS0202
Optics Design for a Monochromatization Scheme for the Direct S-Channel Higgs Production at FCC-ee Collider  
 
  • H.P. Jiang
    HIT, Harbin, People’s Republic of China
  • A. Faus-Golfe
    IFIC, Valencia, Spain
  • A. Faus-Golfe, Z.D. Zhang
    Université Paris-Saclay, CNRS/IN2P3, IJCLab, Orsay, France
  • K. Oide, F. Zimmermann, F. Zimmermann, F. Zimmermann
    CERN, Meyrin, Switzerland
  • K. Oide
    KEK, Ibaraki, Japan
  • Z.D. Zhang
    IHEP, Beijing, People’s Republic of China
  • Z.D. Zhang
    UCAS, Beijing, People’s Republic of China
  • F. Zimmermann
    APS, Silver Spring, USA
 
  The FCC-ee collider baseline foresees four different energy operation modes: Z, WW, H(ZH) and ttbar. An optional fifth mode, called s-channel Higgs production mode, could allow the measurement of the electron Yukawa coupling, in dedicated runs at 125 GeV centre-of-mass energy, provided that the centre-of-mass energy spread, can be reduced by at least an order of magnitude (5-10 MeV). The use of a special collision technique known as monochromatization scheme (mono-scheme) is one way to accomplish it. The transverse monochromatization scheme consists of introducing a dispersion function different from zero but of opposite sign for the two colliding beams at the Interaction Point (IP); In this paper, we will report about the trade-off between energy spread and luminosity, and the first attempt to design a new optics to implement a transverse monochromatic scheme for the FCC-ee Higgs production.  
slides icon Slides THYAS0202 [2.133 MB]  
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FRXAS0101 Power Budgets and Performance Considerations for Future Higgs Factories 256
 
  • F. Zimmermann
    CERN, Meyrin, Switzerland
  • S.A. Belomestnykh, V.D. Shiltsev
    Fermilab, Batavia, Illinois, USA
  • M.E. Biagini, M. Boscolo
    LNF-INFN, Frascati, Italy
  • A. Faus-Golfe
    Université Paris-Saclay, CNRS/IN2P3, IJCLab, Orsay, France
  • J. Gao
    IHEP, Beijing, People’s Republic of China
  • M. Koratzinos
    PSI, Villigen PSI, Switzerland
  • B. List
    DESY, Hamburg, Germany
  • V. Litvinenko
    Stony Brook University, Stony Brook, USA
  • E.A. Nanni, P. Raimondi, T.O. Raubenheimer, J.T. Seeman
    SLAC, Menlo Park, California, USA
  • K. Oide
    DPNC, Genève, Switzerland
  • R.A. Rimmer, T. Satogata
    JLab, Newport News, Virginia, USA
 
  Funding: Work supported by the European Union’s H2020 Framework Programme under grant agreement no. 951754 (FCCIS), and by Fermi Research Alliance, LLC, under contract No. De-AC02-07CH11359 with the US DoE.
A special session at eeFACT’22 reviewed the electrical power budgets and luminosity risks for eight proposed future Higgs and electroweak factories (CCC, CEPC, CERC, CLIC, FCC-ee, HELEN, ILC, and RELIC) and, in comparison, for a lepton-hadron collider (EIC) presently under construction. We report highlights of presentations and discussions.
 
slides icon Slides FRXAS0101 [1.291 MB]  
DOI • reference for this paper ※ doi:10.18429/JACoW-eeFACT2022-FRXAS0101  
About • Received ※ 16 January 2023 — Revised ※ 04 February 2023 — Accepted ※ 08 February 2023 — Issue date ※ 10 February 2023
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