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FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2

Abada, A. ; Arias, S ; Sjöstrand, Torbjörn LU orcid and Zurita, J (2019) In European Physical Journal: Special Topics 228(2). p.261-623
Abstract
In response to the 2013 Update of the European Strategy for Particle Physics, the Future Circular Collider (FCC) study was launched, as an international collaboration hosted by CERN. This study covers a highest-luminosity high-energy lepton collider (FCC-ee) and an energy-frontier hadron collider (FCC-hh), which could, successively, be installed in the same 100 km tunnel. The scientific capabilities of the integrated FCC programme would serve the worldwide community throughout the 21st century. The FCC study also investigates an LHC energy upgrade, using FCC-hh technology. This document constitutes the second volume of the FCC Conceptual Design Report, devoted to the electron-positron collider FCC-ee. After summarizing the physics... (More)
In response to the 2013 Update of the European Strategy for Particle Physics, the Future Circular Collider (FCC) study was launched, as an international collaboration hosted by CERN. This study covers a highest-luminosity high-energy lepton collider (FCC-ee) and an energy-frontier hadron collider (FCC-hh), which could, successively, be installed in the same 100 km tunnel. The scientific capabilities of the integrated FCC programme would serve the worldwide community throughout the 21st century. The FCC study also investigates an LHC energy upgrade, using FCC-hh technology. This document constitutes the second volume of the FCC Conceptual Design Report, devoted to the electron-positron collider FCC-ee. After summarizing the physics discovery opportunities, it presents the accelerator design, performance reach, a staged operation scenario, the underlying technologies, civil engineering, technical infrastructure, and an implementation plan. FCC-ee can be built with today’s technology. Most of the FCC-ee infrastructure could be reused for FCC-hh. Combining concepts from past and present lepton colliders and adding a few novel elements, the FCC-ee design promises outstandingly high luminosity. This will make the FCC-ee a unique precision instrument to study the heaviest known particles (Z, W and H bosons and the top quark), offering great direct and indirect sensitivity to new physics. © 2019, The Author(s). (Less)
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publishing date
type
Contribution to journal
publication status
published
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in
European Physical Journal: Special Topics
volume
228
issue
2
pages
363 pages
publisher
Springer
external identifiers
  • scopus:85067071935
ISSN
1951-6355
DOI
10.1140/epjst/e2019-900045-4
language
English
LU publication?
yes
id
28d1e3d7-1bd9-4f93-8a31-2897736d4729
date added to LUP
2019-07-01 11:03:20
date last changed
2022-12-23 07:14:50
@article{28d1e3d7-1bd9-4f93-8a31-2897736d4729,
  abstract     = {{In response to the 2013 Update of the European Strategy for Particle Physics, the Future Circular Collider (FCC) study was launched, as an international collaboration hosted by CERN. This study covers a highest-luminosity high-energy lepton collider (FCC-ee) and an energy-frontier hadron collider (FCC-hh), which could, successively, be installed in the same 100 km tunnel. The scientific capabilities of the integrated FCC programme would serve the worldwide community throughout the 21st century. The FCC study also investigates an LHC energy upgrade, using FCC-hh technology. This document constitutes the second volume of the FCC Conceptual Design Report, devoted to the electron-positron collider FCC-ee. After summarizing the physics discovery opportunities, it presents the accelerator design, performance reach, a staged operation scenario, the underlying technologies, civil engineering, technical infrastructure, and an implementation plan. FCC-ee can be built with today’s technology. Most of the FCC-ee infrastructure could be reused for FCC-hh. Combining concepts from past and present lepton colliders and adding a few novel elements, the FCC-ee design promises outstandingly high luminosity. This will make the FCC-ee a unique precision instrument to study the heaviest known particles (Z, W and H bosons and the top quark), offering great direct and indirect sensitivity to new physics. © 2019, The Author(s).}},
  author       = {{Abada, A. and Arias, S and Sjöstrand, Torbjörn and Zurita, J}},
  issn         = {{1951-6355}},
  language     = {{eng}},
  number       = {{2}},
  pages        = {{261--623}},
  publisher    = {{Springer}},
  series       = {{European Physical Journal: Special Topics}},
  title        = {{FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2}},
  url          = {{http://dx.doi.org/10.1140/epjst/e2019-900045-4}},
  doi          = {{10.1140/epjst/e2019-900045-4}},
  volume       = {{228}},
  year         = {{2019}},
}