Journal of High Energy Physics (Nov 2019)
Top-quark physics at the CLIC electron-positron linear collider
- The CLICdp collaboration,
- H. Abramowicz,
- N. Alipour Tehrani,
- D. Arominski,
- Y. Benhammou,
- M. Benoit,
- J.-J. Blaising,
- M. Boronat,
- O. Borysov,
- R. R. Bosley,
- I. Božović Jelisavčić,
- I. Boyko,
- S. Brass,
- E. Brondolin,
- P. Bruckman de Renstrom,
- M. Buckland,
- P. N. Burrows,
- M. Chefdeville,
- S. Chekanov,
- T. Coates,
- D. Dannheim,
- M. Demarteau,
- H. Denizli,
- G. Durieux,
- G. Eigen,
- K. Elsener,
- E. Fullana,
- J. Fuster,
- M. Gabriel,
- F. Gaede,
- I. García,
- J. Goldstein,
- P. Gomis Lopez,
- C. Graf,
- S. Green,
- C. Grefe,
- C. Grojean,
- A. Hoang,
- D. Hynds,
- A. Joffe,
- J. Kalinowski,
- G. Kačarević,
- W. Kilian,
- N. van der Kolk,
- M. Krawczyk,
- M. Kucharczyk,
- E. Leogrande,
- T. Lesiak,
- A. Levy,
- I. Levy,
- L. Linssen,
- A. A. Maier,
- V. Makarenko,
- J. S. Marshall,
- V. Martin,
- V. Mateu,
- O. Matsedonskyi,
- J. Metcalfe,
- G. Milutinović Dumbelović,
- R. M. Münker,
- Yu. Nefedov,
- K. Nowak,
- A. Nürnberg,
- M. Pandurović,
- M. Perelló,
- E. Perez Codina,
- M. Petric,
- F. Pitters,
- T. Price,
- T. Quast,
- S. Redford,
- J. Repond,
- A. Robson,
- P. Roloff,
- E. Ros,
- K. Rozwadowska,
- A. Ruiz-Jimeno,
- A. Sailer,
- F. Salvatore,
- U. Schnoor,
- D. Schulte,
- A. Senol,
- G. Shelkov,
- E. Sicking,
- F. Simon,
- R. Simoniello,
- P. Sopicki,
- S. Spannagel,
- S. Stapnes,
- R. Ström,
- M. Szalay,
- M. A. Thomson,
- B. Turbiarz,
- O. Viazlo,
- M. Vicente,
- I. Vila,
- M. Vos,
- J. Vossebeld,
- M. F. Watson,
- N. K. Watson,
- M. A. Weber,
- H. Weerts,
- J. D. Wells,
- A. Widl,
- M. Williams,
- A.G. Winter,
- T. Wojtoń,
- A. Wulzer,
- B. Xu,
- L. Xia,
- T. You,
- A. F. Żarnecki,
- L. Zawiejski,
- C. Zhang,
- J. Zhang,
- Y. Zhang,
- Z. Zhang,
- A. Zhemchugov
Affiliations
- The CLICdp collaboration
- H. Abramowicz
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- N. Alipour Tehrani
- CERN
- D. Arominski
- CERN
- Y. Benhammou
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- M. Benoit
- Département de Physique Nucléaire et Corpusculaire (DPNC), Université de Genéve
- J.-J. Blaising
- Laboratoire d’Annecy-le-Vieux de Physique des Particules
- M. Boronat
- IFIC, CSIC-Universidad de Valencia
- O. Borysov
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- R. R. Bosley
- University of Birmingham
- I. Božović Jelisavčić
- Vinča Institute of Nuclear Sciences, University of Belgrade
- I. Boyko
- Joint Institute for Nuclear Research
- S. Brass
- Department of Physics, University of Siegen
- E. Brondolin
- CERN
- P. Bruckman de Renstrom
- Institute of Nuclear Physics, Polish Academy of Sciences
- M. Buckland
- University of Liverpool
- P. N. Burrows
- University of Oxford
- M. Chefdeville
- Laboratoire d’Annecy-le-Vieux de Physique des Particules
- S. Chekanov
- Argonne National Laboratory
- T. Coates
- University of Sussex
- D. Dannheim
- CERN
- M. Demarteau
- Argonne National Laboratory
- H. Denizli
- Department of Physics, Abant Izzet Baysal University
- G. Durieux
- DESY
- G. Eigen
- Department of Physics and Technology, University of Bergen
- K. Elsener
- CERN
- E. Fullana
- IFIC, CSIC-Universidad de Valencia
- J. Fuster
- IFIC, CSIC-Universidad de Valencia
- M. Gabriel
- Max-Planck-Institut für Physik
- F. Gaede
- CERN
- I. García
- IFIC, CSIC-Universidad de Valencia
- J. Goldstein
- University of Bristol
- P. Gomis Lopez
- IFIC, CSIC-Universidad de Valencia
- C. Graf
- Max-Planck-Institut für Physik
- S. Green
- Cavendish Laboratory, University of Cambridge
- C. Grefe
- CERN
- C. Grojean
- DESY
- A. Hoang
- Faculty of Physics, University of Vienna
- D. Hynds
- CERN
- A. Joffe
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- J. Kalinowski
- Faculty of Physics, University of Warsaw
- G. Kačarević
- Vinča Institute of Nuclear Sciences, University of Belgrade
- W. Kilian
- Department of Physics, University of Siegen
- N. van der Kolk
- Max-Planck-Institut für Physik
- M. Krawczyk
- Faculty of Physics, University of Warsaw
- M. Kucharczyk
- Institute of Nuclear Physics, Polish Academy of Sciences
- E. Leogrande
- CERN
- T. Lesiak
- Institute of Nuclear Physics, Polish Academy of Sciences
- A. Levy
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- I. Levy
- Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University
- L. Linssen
- CERN
- A. A. Maier
- CERN
- V. Makarenko
- National Scientific and Educational Centre of Particle and High Energy Physics, Belarusian State University
- J. S. Marshall
- Cavendish Laboratory, University of Cambridge
- V. Martin
- University of Edinburgh
- V. Mateu
- Departamento de Física Fundamental and IUFFyM, Universidad de Salamanca
- O. Matsedonskyi
- DESY
- J. Metcalfe
- Argonne National Laboratory
- G. Milutinović Dumbelović
- Vinča Institute of Nuclear Sciences, University of Belgrade
- R. M. Münker
- CERN
- Yu. Nefedov
- Joint Institute for Nuclear Research
- K. Nowak
- Faculty of Physics, University of Warsaw
- A. Nürnberg
- CERN
- M. Pandurović
- Vinča Institute of Nuclear Sciences, University of Belgrade
- M. Perelló
- IFIC, CSIC-Universidad de Valencia
- E. Perez Codina
- CERN
- M. Petric
- CERN
- F. Pitters
- CERN
- T. Price
- University of Birmingham
- T. Quast
- CERN
- S. Redford
- CERN
- J. Repond
- Argonne National Laboratory
- A. Robson
- University of Glasgow
- P. Roloff
- CERN
- E. Ros
- IFIC, CSIC-Universidad de Valencia
- K. Rozwadowska
- Faculty of Physics, University of Warsaw
- A. Ruiz-Jimeno
- IFCA, CSIC-Universidad de Cantabria
- A. Sailer
- CERN
- F. Salvatore
- University of Sussex
- U. Schnoor
- CERN
- D. Schulte
- CERN
- A. Senol
- Department of Physics, Abant Izzet Baysal University
- G. Shelkov
- Joint Institute for Nuclear Research
- E. Sicking
- CERN
- F. Simon
- Max-Planck-Institut für Physik
- R. Simoniello
- CERN
- P. Sopicki
- Faculty of Physics, University of Warsaw
- S. Spannagel
- CERN
- S. Stapnes
- CERN
- R. Ström
- CERN
- M. Szalay
- Max-Planck-Institut für Physik
- M. A. Thomson
- Cavendish Laboratory, University of Cambridge
- B. Turbiarz
- Institute of Nuclear Physics, Polish Academy of Sciences
- O. Viazlo
- CERN
- M. Vicente
- CERN
- I. Vila
- IFCA, CSIC-Universidad de Cantabria
- M. Vos
- IFIC, CSIC-Universidad de Valencia
- J. Vossebeld
- University of Liverpool
- M. F. Watson
- University of Birmingham
- N. K. Watson
- University of Birmingham
- M. A. Weber
- CERN
- H. Weerts
- Argonne National Laboratory
- J. D. Wells
- Physics Department, University of Michigan
- A. Widl
- Faculty of Physics, University of Vienna
- M. Williams
- CERN
- A.G. Winter
- University of Birmingham
- T. Wojtoń
- Institute of Nuclear Physics, Polish Academy of Sciences
- A. Wulzer
- CERN
- B. Xu
- Cavendish Laboratory, University of Cambridge
- L. Xia
- Argonne National Laboratory
- T. You
- Cavendish Laboratory, University of Cambridge
- A. F. Żarnecki
- Faculty of Physics, University of Warsaw
- L. Zawiejski
- Institute of Nuclear Physics, Polish Academy of Sciences
- C. Zhang
- Institute of High Energy Physics, Chinese Academy of Sciences
- J. Zhang
- Argonne National Laboratory
- Y. Zhang
- University of Edinburgh
- Z. Zhang
- Physics Department, University of Michigan
- A. Zhemchugov
- Joint Institute for Nuclear Research
- DOI
- https://doi.org/10.1007/JHEP11(2019)003
- Journal volume & issue
-
Vol. 2019,
no. 11
pp. 1 – 88
Abstract
Abstract The Compact Linear Collider (CLIC) is a proposed future high-luminosity linear electron-positron collider operating at three energy stages, with nominal centre-of-mass energies s $$ \sqrt{s} $$ = 380 GeV, 1.5 TeV, and 3 TeV. Its aim is to explore the energy frontier, providing sensitivity to physics beyond the Standard Model (BSM) and precision measurements of Standard Model processes with an emphasis on Higgs boson and top-quark physics. The opportunities for top-quark physics at CLIC are discussed in this paper. The initial stage of operation focuses on top-quark pair production measurements, as well as the search for rare flavour-changing neutral current (FCNC) top-quark decays. It also includes a top-quark pair production threshold scan around 350 GeV which provides a precise measurement of the top-quark mass in a well-defined theoretical framework. At the higher-energy stages, studies are made of top-quark pairs produced in association with other particles. A study of t̄tH production including the extraction of the top Yukawa coupling is presented as well as a study of vector boson fusion (VBF) production, which gives direct access to high-energy electroweak interactions. Operation above 1 TeV leads to more highly collimated jet environments where dedicated methods are used to analyse the jet constituents. These techniques enable studies of the top-quark pair production, and hence the sensitivity to BSM physics, to be extended to higher energies. This paper also includes phenomenological interpretations that may be performed using the results from the extensive top-quark physics programme at CLIC.
Keywords