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Future Circular Collider Feasibility Study Report: Volume 3 Civil Engineering, Implementation and Sustainability

  • CERN FCC
  • CERN
  • Paul Scherrer Institut
  • CEA-Saclay
  • Photon Science, Deutsches Elektronen-Synchrotron DESY, Hamburg,
  • Humboldt-Universität zu Berlin
  • Brookhaven National Laboratory
  • SLAC National Accelerator Laboratory
  • Yonsei University
  • Geomagnetism Laboratory, School of Environmental Sciences, University of Liverpool
  • Institute of Materials Science and Technology
  • Fachhochschule Technikum Wien
  • T.-D. Lee Institute
  • Shanghai Jiaotong University
  • Karlsruhe Institute of Technology, Campus North
  • Istituto Nazionale di Fisica Nucleare, Sezione di Milano
  • Uşak Üniversitesi
  • Banaras Hindu University
  • Institut National de Physique Nucléaire et de Physique des Particules
  • Laboratoire de Physique des 2 Infinis Irène Joliot Curie
  • L’ Orme des Merisiers
  • University of Bern
  • Eidgenössische Technische Hochschule Zürich
  • Bolu Abant İzzet Baysal Üniversitesi
  • Chinese Academy of Sciences

Research output: Contribution to journalReview articlepeer-review

Abstract

Volume 3 of the FCC Feasibility Report presents studies related to civil engineering, the development of a project implementation scenario, and environmental and sustainability aspects. The report details the iterative improvements made to the civil engineering concepts since 2018, taking into account subsurface conditions, accelerator and experiment requirements, and territorial considerations. It outlines a technically feasible and economically viable civil engineering configuration that serves as the baseline for detailed subsurface investigations, construction design, cost estimation, and project implementation planning. Additionally, the report highlights ongoing subsurface investigations in key areas to support the development of an improved 3D subsurface model of the region. The report describes the development of the project scenario based on the ‘avoid-reduce-compensate’ iterative optimisation approach. The reference scenario balances optimal physics performance with territorial compatibility, implementation risks, and costs. Environmental field investigations covering almost 600 hectares of terrain—including numerous urban, economic, social, and technical aspects—confirmed the project’s technical feasibility and contributed to the preparation of essential input documents for the formal project authorisation phase. The summary also highlights the initiation of public dialogue as part of the authorisation process. The results of a comprehensive socio-economic impact assessment, which included significant environmental effects, are presented. Even under the most conservative and stringent conditions, a positive benefit-cost ratio for the FCC-ee is obtained. Finally, the report provides a summary of the studies conducted to document the current state of the environment.
Original languageEnglish
Pages (from-to)5113-5383
Number of pages271
JournalEuropean Physical Journal: Special Topics
Volume2025
Issue numberVol. 234, November
DOIs
Publication statusPublished - 13 Oct 2025

Bibliographical note

Publisher Copyright: © The Author(s) 2025.

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