Skip to main content
Home
Department Of Physics text logo
  • Research
    • Our research
    • Our research groups
    • Our research in action
    • Research funding support
    • Summer internships for undergraduates
  • Study
    • Undergraduates
    • Postgraduates
  • Engage
    • For alumni
    • For business
    • For schools
    • For the public
  • Support
Menu
Insertion of STC into TRT at the Department of Physics, Oxford
Credit: CERN

Philip Burrows

Professor of Physics

Sub department

  • Particle Physics
Philip.Burrows@physics.ox.ac.uk
Telephone: 01865 (2)73451
Denys Wilkinson Building, room 615a
  • About
  • Publications

Design and optimization of the CLIC beam delivery system at 7 TeV

Physical Review Accelerators and Beams American Physical Society (APS) (2026)
More details from the publisher

High-Level Environmental Sustainability Guidelines for Large Accelerator Facilities

EPJ Research Infrastructures Springer 10:1 (2026) 12

Authors:

Hannah Wakeling, Philip N Burrows, Jim Clarke, Jo Colwell, Niko Neufeld, Ben Shepherd, Dwayne Spiteri, John Thomason

Abstract:

The proposed construction of new particle accelerator-based facilities in the coming decades—and upgrades to existing facilities—provides the unique opportunity to embed innovative environmental impact reduction techniques into their design. This living document provides high-level guidelines to improve environmental sustainability in the planning, construction, operational and decommissioning stages of large accelerator facilities. A collection of various resources is provided, with examples of some existing and suggested practices.
More details from the publisher
Details from ORA
More details

A linear collider vision for the future of particle physics

The European Physical Journal Special Topics (2026) 1-156

Authors:

H Abramowicz, E Adli, F Alharthi, M Almanza-Soto, Mm Altakach, W Altmannshofer, S Ampudia Castelazo, D Angal-Kalinin, J Anguiano, Rb Appleby, O Apsimon, A Arbey, F Arco, O Arquero, A Aryshev, S Asai, D Attié, Jl Avila-Jimenez, H Baer, Ja Bagger, Y Bai, Ir Bailey, C Balazs, P Bambade, T Barklow, J Baudot, P Bechtle, T Behnke, Ab Bellerive, S Belomestnykh, Y Benhammou, J Berenguer-Antequera, M Berger, M Berggren, M Bertucci, M Besançon, D Bett, P-C Bhat, T Biekötter, S Bilanishvili, B Bilki, B Bilki, Vm Bjelland, J Björklund Svensson, C Blanch, J de Blas, B Bliewert, M Boehler, S Boogert, M Boronat

Abstract:

In this paper we review the physics opportunities at linear e+e−$$\mathrm{e}^{+}\mathrm{e}^{-} $$ colliders with a special focus on high centre-of-mass energies and beam polarisation, take a fresh look at the various accelerator technologies available or under development and, for the first time, discuss how a facility first equipped with a technology that is mature today could be upgraded with technologies of tomorrow to reach much higher energies and/or luminosities. In addition, we discuss detectors, alternative collider modes, as well as opportunities for beyond-collider experiments and R&D facilities as part of a linear collider facility (LCF). The material of this paper supports all plans for e+e−$$\mathrm{e}^{+}\mathrm{e}^{-} $$ linear colliders and the additional opportunities they offer, independently of technology choice or proposed site, as well as R&D for advanced accelerator technologies. This joint perspective on the physics goals, early technologies and upgrade strategies has been developed by the LCVision team based on an initial discussion at LCWS2024 in Tokyo and a follow-up at the LCVision Community Event at CERN in January 2025. It heavily builds on decades of achievements of the global linear collider community, in particular in the context of CLIC and ILC.
More details from the publisher

Correction: Future Circular Collider Feasibility Study Report

The European Physical Journal Special Topics (2026) 1-12

Authors:

M Benedikt, F Zimmermann, B Auchmann, W Bartmann, Jp Burnet, C Carli, A Chancé, P Craievich, M Giovannozzi, C Grojean, J Gutleber, K Hanke, A Henriques, P Janot, C Lourenço, M Mangano, T Otto, J Poole, S Rajagopalan, T Raubenheimer, E Todesco, L Ulrici, T Watson, G Wilkinson, A Abada, M Abbrescia, H Abdolmaleki, Sh Abidi, A Abramov, C Adam, M Ady, Pr Adz̆ić, I Agapov, D Aguglia, I Ahmed, M Aiba, G Aielli, T Akan, N Akchurin, D Akturk, M Al-Thakeel, Gl Alberghi, J Alcaraz Maestre, M Aleksa, R Aleksan, F Alharthi, J Alimena, A Alimenti, S Alioli, L Alix
More details from the publisher

Future Circular Collider Feasibility Study Report

The European Physical Journal C SpringerOpen 85:12 (2025) 1468

Authors:

M Benedikt, F Zimmermann, B Auchmann, W Bartmann, JP Burnet, C Carli, A Chancé, P Craievich, M Giovannozzi, C Grojean, J Gutleber, K Hanke, André Henriques, P Janot, C Lourenço, M Mangano, T Otto, J Poole, S Rajagopalan, T Raubenheimer, E Todesco, L Ulrici, T Watson, G Wilkinson

Abstract:

Volume 1 of the FCC Feasibility Report presents an overview of the physics case, experimental programme, and detector concepts for the Future Circular Collider (FCC). This volume outlines how FCC would address some of the most profound open questions in particle physics, from precision studies of the Higgs and EW bosons and of the top quark, to the exploration of physics beyond the Standard Model. The report reviews the experimental opportunities offered by the staged implementation of FCC, beginning with an electron-positron collider (FCC-ee), operating at several centre-of-mass energies, followed by a hadron collider (FCC-hh). Benchmark examples are given of the expected physics performance, in terms of precision and sensitivity to new phenomena, of each collider stage. Detector requirements and conceptual designs for FCC-ee experiments are discussed, as are the specific demands that the physics programme imposes on the accelerator in the domains of the calibration of the collision energy, and the interface region between the accelerator and the detector. The report also highlights advances in detector, software and computing technologies, as well as the theoretical tools/reconstruction techniques that will enable the precision measurements and discovery potential of the FCC experimental programme. The content and structure of this report are guided by the scope and priorities defined in the mandate of the FCC Feasibility Study. It is therefore not intended to serve as an exhaustive review of the full physics potential of FCC. Several topics, already covered in earlier reports such as the FCC CDR, are not reiterated here or are addressed only briefly, in alignment with the study’s focus. This volume reflects the outcome of a global collaborative effort involving hundreds of scientists and institutions, aided by a dedicated community-building coordination, and provides a targeted assessment of the scientific opportunities and experimental foundations of the FCC programme.
More details from the publisher
Details from ORA
More details

Pagination

  • Current page 1
  • Page 2
  • Page 3
  • Page 4
  • Page 5
  • Page 6
  • Page 7
  • Page 8
  • Page 9
  • …
  • Next page Next
  • Last page Last

Footer Menu

  • Contact us
  • Giving to the Dept of Physics
  • Work with us
  • Media

User account menu

  • Log in

Follow us

FIND US

Clarendon Laboratory,

Parks Road,

Oxford,

OX1 3PU

CONTACT US

Tel: +44(0)1865272200

University of Oxfrod logo Department Of Physics text logo
IOP Juno Champion logo Athena Swan Silver Award logo

© University of Oxford - Department of Physics

Cookies | Privacy policy | Accessibility statement

Built by: Versantus

  • Home
  • How to edit
  • Research
  • Study
  • Engage
  • Our people
  • News & Comment
  • Events
  • Our facilities & services
  • About us
  • Giving to Physics
  • Current students
  • Staff intranet