The international Future Circular Collider (FCC) study aims at a design of p-p, e+e−, e-p colliders to be built in anew 100 km tunnel in the Geneva region. The e+e- collider (FCC-ee) has a centre of mass energy range between 90 (Z-pole) and 375 GeV (tt¯). To reach such unprecedented energies and luminosities, the design of the interaction region is crucial. The crab-waist collision scheme [2] has been chosen for the design and it will be compatible with all beam energies. In this paper we will describe the machine detector interface layout including the solenoid compensation scheme. We will describe how this layout fulfills all the requirements set by the parameters table and by the physical constraints. We will summarize the studies of the impact of the synchrotron radiation, the analysis of trapped modes and of the backgrounds induced by single beam and luminosity effects giving an estimate of the losses in the interaction region and in the detector.

Machine Detector Interface for the e⁺e⁻ Future Circular Collider / Boscolo, Manuela; Nicola, Bacchetta; Belli, Eleonora; Michael, Benedikt; Oscar, Blanco-García; Alain, Blondel; Anton, Bogomyagkov; Helmut, Burkhardt; Collamati, Francesco; Mogens, Dam; Dima El Khechen, ; Konrad, Elsener; Miguel Gil Costa, ; Patrick, Janot; Roberto, Kersevan; Anna, Kolano; Michael, Koratzinos; Emilia, Leogrande; Evgeny, Levichev; Marian, Lueckof; Alexander, Novokhatski; Katsunobu, Oide; Emmanuelle, Perez; Sergey, Sinyatkin; Sullivan, Kristian Michael; Niloufar, Tehrani; Herman Ten Kate, ; Oleksandr, Viazlo; Georgios, Voutsinas; Frank, Zimmermann. - (2019). ((Intervento presentato al convegno 62th ICFA ABDW on High Luminosity Circular e+e − Colliders tenutosi a The Hong Kong University of Science and Technology, Hong Kong [10.18429/jacow-eefact2018-wexba02].

Machine Detector Interface for the e⁺e⁻ Future Circular Collider

Manuela Boscolo
;
Eleonora Belli
;
Francesco Collamati
;
Sullivan, Kristian Michael;
2019

Abstract

The international Future Circular Collider (FCC) study aims at a design of p-p, e+e−, e-p colliders to be built in anew 100 km tunnel in the Geneva region. The e+e- collider (FCC-ee) has a centre of mass energy range between 90 (Z-pole) and 375 GeV (tt¯). To reach such unprecedented energies and luminosities, the design of the interaction region is crucial. The crab-waist collision scheme [2] has been chosen for the design and it will be compatible with all beam energies. In this paper we will describe the machine detector interface layout including the solenoid compensation scheme. We will describe how this layout fulfills all the requirements set by the parameters table and by the physical constraints. We will summarize the studies of the impact of the synchrotron radiation, the analysis of trapped modes and of the backgrounds induced by single beam and luminosity effects giving an estimate of the losses in the interaction region and in the detector.
62th ICFA ABDW on High Luminosity Circular e+e − Colliders
FCC, FCC-ee, lepton collider; machine detector interface; trapped modes; Future Circular Collider
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Machine Detector Interface for the e⁺e⁻ Future Circular Collider / Boscolo, Manuela; Nicola, Bacchetta; Belli, Eleonora; Michael, Benedikt; Oscar, Blanco-García; Alain, Blondel; Anton, Bogomyagkov; Helmut, Burkhardt; Collamati, Francesco; Mogens, Dam; Dima El Khechen, ; Konrad, Elsener; Miguel Gil Costa, ; Patrick, Janot; Roberto, Kersevan; Anna, Kolano; Michael, Koratzinos; Emilia, Leogrande; Evgeny, Levichev; Marian, Lueckof; Alexander, Novokhatski; Katsunobu, Oide; Emmanuelle, Perez; Sergey, Sinyatkin; Sullivan, Kristian Michael; Niloufar, Tehrani; Herman Ten Kate, ; Oleksandr, Viazlo; Georgios, Voutsinas; Frank, Zimmermann. - (2019). ((Intervento presentato al convegno 62th ICFA ABDW on High Luminosity Circular e+e − Colliders tenutosi a The Hong Kong University of Science and Technology, Hong Kong [10.18429/jacow-eefact2018-wexba02].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1269511
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