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The Compact Linear Collider, CLIC, is a proposed e$^+$e$^-$ collider at the TeV scale whose physics potential ranges from high-precision measurements to extensive direct sensitivity to physics beyond the Standard Model. This document…

High Energy Physics - Experiment · Physics 2018-12-20 P. Roloff , R. Franceschini , U. Schnoor , A. Wulzer

Linear e+e- colliders provide a rich set of opportunities for top quark physics, crucial for the understanding of electroweak symmetry breaking and for the search for physics beyond the Standard Model. A ttbar threshold scan in e+e-…

High Energy Physics - Experiment · Physics 2014-12-01 Frank Simon

Future energy-frontier electron-positron colliders will be capable of high-precision studies of top quark properties. The measurement of the top-pair production cross section around the threshold provides access to the mass of the top quark…

High Energy Physics - Experiment · Physics 2016-11-11 Frank Simon

The CLIC study of a high-energy (0.5 - 5 TeV), high-luminosity (1034 - 1035 cm-2 sec-1) e+e- linear collider is presented. Beam acceleration using high frequency (30 GHz) normal-conducting structures operating at high accelerating fields…

Accelerator Physics · Physics 2008-11-26 Jean-Pierre Delahaye , Ian Wilson

Many supersymmetric models predict new particles within the reach of the next generation of colliders. For an understanding of the model structure and the mechanism(s) of symmetry breaking, it is important to know the masses of the new…

High Energy Physics - Phenomenology · Physics 2009-04-30 Ayres Freitas , Caroline Milstene , Michael Schmitt , Andre Sopczak

A future e+e- collider, such as the ILC or CLIC, would allow the Higgs sector to be probed with a precision significantly beyond that achievable at the High-Luminosity LHC. A central part of the Higgs programme at an e+e- collider is the…

High Energy Physics - Experiment · Physics 2016-03-23 Mark Thomson

The Compact Linear Collider (CLIC) is a TeV-scale high-luminosity linear e$^+$e$^-$ collider under development by international collaborations hosted by CERN. This document provides an overview of the design, technology, and implementation…

Accelerator Physics · Physics 2018-12-20 A. Robson , P. N. Burrows , N. Catalan Lasheras , L. Linssen , M. Petric , D. Schulte , E. Sicking , S. Stapnes , W. Wuensch

This report describes the physics potential and experiments at a future multi-TeV e+e- collider based on the Compact Linear Collider (CLIC) technology. The physics scenarios considered include precision measurements of known quantities as…

Instrumentation and Detectors · Physics 2012-04-22 Lucie Linssen , Akiya Miyamoto , Marcel Stanitzki , Harry Weerts

The Compact Linear Collider (CLIC) is a multi-TeV high-luminosity linear e+e- collider under development. For an optimal exploitation of its physics potential, CLIC is foreseen to be built and operated in a staged approach with three…

Accelerator Physics · Physics 2017-03-28 The CLIC , CLICdp collaborations , : , M. J. Boland , U. Felzmann , P. J. Giansiracusa , T. G. Lucas , R. P. Rassool , C. Balazs , T. K. Charles , K. Afanaciev , I. Emeliantchik , A. Ignatenko , V. Makarenko , N. Shumeiko , A. Patapenka , I. Zhuk , A. C. Abusleme Hoffman , M. A. Diaz Gutierrez , M. Vogel Gonzalez , Y. Chi , X. He , G. Pei , S. Pei , G. Shu , X. Wang , J. Zhang , F. Zhao , Z. Zhou , H. Chen , Y. Gao , W. Huang , Y. P. Kuang , B. Li , Y. Li , J. Shao , J. Shi , C. Tang , X. Wu , L. Ma , Y. Han , W. Fang , Q. Gu , D. Huang , X. Huang , J. Tan , Z. Wang , Z. Zhao , T. Laštovička , U. Uggerhoj , T. N. Wistisen , A. Aabloo , K. Eimre , K. Kuppart , S. Vigonski , V. Zadin , M. Aicheler , E. Baibuz , E. Brücken , F. Djurabekova , P. Eerola , F. Garcia , E. Haeggström , K. Huitu , V. Jansson , V. Karimaki , I. Kassamakov , A. Kyritsakis , S. Lehti , A. Meriläinen , R. Montonen , T. Niinikoski , K. Nordlund , K. Österberg , M. Parekh , N. A. Törnqvist , J. Väinölä , M. Veske , W. Farabolini , A. Mollard , O. Napoly , F. Peauger , J. Plouin , P. Bambade , I. Chaikovska , R. Chehab , M. Davier , W. Kaabi , E. Kou , F. LeDiberder , R. Pöschl , D. Zerwas , B. Aimard , G. Balik , J. -P. Baud , J. -J. Blaising , L. Brunetti , M. Chefdeville , C. Drancourt , N. Geoffroy , J. Jacquemier , A. Jeremie , Y. Karyotakis , J. M. Nappa , S. Vilalte , G. Vouters , A. Bernard , I. Peric , M. Gabriel , F. Simon , M. Szalay , N. van der Kolk , T. Alexopoulos , E. N. Gazis , N. Gazis , E. Ikarios , V. Kostopoulos , S. Kourkoulis , P. D. Gupta , P. Shrivastava , H. Arfaei , M. K. Dayyani , H. Ghasem , S. S. Hajari , H. Shaker , Y. Ashkenazy , H. Abramowicz , Y. Benhammou , O. Borysov , S. Kananov , A. Levy , I. Levy , O. Rosenblat , G. D'Auria , S. Di Mitri , T. Abe , A. Aryshev , T. Higo , Y. Makida , S. Matsumoto , T. Shidara , T. Takatomi , Y. Takubo , T. Tauchi , N. Toge , K. Ueno , J. Urakawa , A. Yamamoto , M. Yamanaka , R. Raboanary , R. Hart , H. van der Graaf , G. Eigen , J. Zalieckas , E. Adli , R. Lillestøl , L. Malina , J. Pfingstner , K. N. Sjobak , W. Ahmed , M. I. Asghar , H. Hoorani , S. Bugiel , R. Dasgupta , M. Firlej , T. A. Fiutowski , M. Idzik , M. Kopec , M. Kuczynska , J. Moron , K. P. Swientek , W. Daniluk , B. Krupa , M. Kucharczyk , T. Lesiak , A. Moszczynski , B. Pawlik , P. Sopicki , T. Wojtoń , L. Zawiejski , J. Kalinowski , M. Krawczyk , A. F. Żarnecki , E. Firu , V. Ghenescu , A. T. Neagu , T. Preda , I-S. Zgura , A. Aloev , N. Azaryan , J. Budagov , M. Chizhov , M. Filippova , V. Glagolev , A. Gongadze , S. Grigoryan , D. Gudkov , V. Karjavine , M. Lyablin , A. Olyunin , A. Samochkine , A. Sapronov , G. Shirkov , V. Soldatov , A. Solodko , E. Solodko , G. Trubnikov , I. Tyapkin , V. Uzhinsky , A. Vorozhtov , E. Levichev , N. Mezentsev , P. Piminov , D. Shatilov , P. Vobly , K. Zolotarev , I. Bozovic Jelisavcic , G. Kacarevic , S. Lukic , G. Milutinovic-Dumbelovic , M. Pandurovic , U. Iriso , F. Perez , M. Pont , J. Trenado , M. Aguilar-Benitez , J. Calero , L. Garcia-Tabares , D. Gavela , J. L. Gutierrez , D. Lopez , F. Toral , D. Moya , A. Ruiz Jimeno , I. Vila , T. Argyropoulos , C. Blanch Gutierrez , M. Boronat , D. Esperante , A. Faus-Golfe , J. Fuster , N. Fuster Martinez , N. Galindo Muñoz , I. García , J. Giner Navarro , E. Ros , M. Vos , R. Brenner , T. Ekelöf , M. Jacewicz , J. Ögren , M. Olvegård , R. Ruber , V. Ziemann , D. Aguglia , N. Alipour Tehrani , A. Andersson , F. Andrianala , F. Antoniou , K. Artoos , S. Atieh , R. Ballabriga Sune , M. J. Barnes , J. Barranco Garcia , H. Bartosik , C. Belver-Aguilar , A. Benot Morell , D. R. Bett , S. Bettoni , G. Blanchot , O. Blanco Garcia , X. A. Bonnin , O. Brunner , H. Burkhardt , S. Calatroni , M. Campbell , N. Catalan Lasheras , M. Cerqueira Bastos , A. Cherif , E. Chevallay , B. Constance , R. Corsini , B. Cure , S. Curt , B. Dalena , D. Dannheim , G. De Michele , L. De Oliveira , N. Deelen , J. P. Delahaye , T. Dobers , S. Doebert , M. Draper , F. Duarte Ramos , A. Dubrovskiy , K. Elsener , J. Esberg , M. Esposito , V. Fedosseev , P. Ferracin , A. Fiergolski , K. Foraz , A. Fowler , F. Friebel , J-F. Fuchs , C. A. Fuentes Rojas , A. Gaddi , L. Garcia Fajardo , H. Garcia Morales , C. Garion , L. Gatignon , J-C. Gayde , H. Gerwig , A. N. Goldblatt , C. Grefe , A. Grudiev , F. G. Guillot-Vignot , M. L. Gutt-Mostowy , M. Hauschild , C. Hessler , J. K. Holma , E. Holzer , M. Hourican , D. Hynds , Y. Inntjore Levinsen , B. Jeanneret , E. Jensen , M. Jonker , M. Kastriotou , J. M. K. Kemppinen , R. B. Kieffer , W. Klempt , O. Kononenko , A. Korsback , E. Koukovini Platia , J. W. Kovermann , C-I. Kozsar , I. Kremastiotis , S. Kulis , A. Latina , F. Leaux , P. Lebrun , T. Lefevre , L. Linssen , X. Llopart Cudie , A. A. Maier , H. Mainaud Durand , E. Manosperti , C. Marelli , E. Marin Lacoma , R. Martin , S. Mazzoni , G. Mcmonagle , O. Mete , L. M. Mether , M. Modena , R. M. Münker , T. Muranaka , E. Nebot Del Busto , N. Nikiforou , D. Nisbet , J-M. Nonglaton , F. X. Nuiry , A. Nürnberg , M. Olvegard , J. Osborne , S. Papadopoulou , Y. Papaphilippou , A. Passarelli , M. Patecki , L. Pazdera , D. Pellegrini , K. Pepitone , E. Perez Codina , A. Perez Fontenla , T. H. B. Persson , M. Petrič , F. Pitters , S. Pittet , F. Plassard , R. Rajamak , S. Redford , Y. Renier , S. F. Rey , G. Riddone , L. Rinolfi , E. Rodriguez Castro , P. Roloff , C. Rossi , V. Rude , G. Rumolo , A. Sailer , E. Santin , D. Schlatter , H. Schmickler , D. Schulte , N. Shipman , E. Sicking , R. Simoniello , P. K. Skowronski , P. Sobrino Mompean , L. Soby , M. P. Sosin , S. Sroka , S. Stapnes , G. Sterbini , R. Ström , I. Syratchev , F. Tecker , P. A. Thonet , L. Timeo , H. Timko , R. Tomas Garcia , P. Valerio , A. L. Vamvakas , A. Vivoli , M. A. Weber , R. Wegner , M. Wendt , B. Woolley , W. Wuensch , J. Uythoven , H. Zha , P. Zisopoulos , M. Benoit , M. Vicente Barreto Pinto , M. Bopp , H. H. Braun , M. Csatari Divall , M. Dehler , T. Garvey , J. Y. Raguin , L. Rivkin , R. Zennaro , A. Aksoy , Z. Nergiz , E. Pilicer , I. Tapan , O. Yavas , V. Baturin , R. Kholodov , S. Lebedynskyi , V. Miroshnichenko , S. Mordyk , I. Profatilova , V. Storizhko , N. Watson , A. Winter , J. Goldstein , S. Green , J. S. Marshall , M. A. Thomson , B. Xu , W. A. Gillespie , R. Pan , M. A Tyrk , D. Protopopescu , A. Robson , R. Apsimon , I. Bailey , G. Burt , D. Constable , A. Dexter , S. Karimian , C. Lingwood , M. D. Buckland , G. Casse , J. Vossebeld , A. Bosco , P. Karataev , K. Kruchinin , K. Lekomtsev , L. Nevay , J. Snuverink , E. Yamakawa , V. Boisvert , S. Boogert , G. Boorman , S. Gibson , A. Lyapin , W. Shields , P. Teixeira-Dias , S. West , R. Jones , N. Joshi , R. Bodenstein , P. N. Burrows , G. B. Christian , D. Gamba , C. Perry , J. Roberts , J. A. Clarke , N. A. Collomb , S. P. Jamison , B. J. A. Shepherd , D. Walsh , M. Demarteau , J. Repond , H. Weerts , L. Xia , J. D. Wells , C. Adolphsen , T. Barklow , M. Breidenbach , N. Graf , J. Hewett , T. Markiewicz , D. McCormick , K. Moffeit , Y. Nosochkov , M. Oriunno , N. Phinney , T. Rizzo , S. Tantawi , F. Wang , J. Wang , G. White , M. Woodley

The Compact Linear Collider (CLIC) is a high-energy high-luminosity linear electron-positron collider under development. It is foreseen to be built and operated in three stages, at centre-of-mass energies of 380 GeV, 1.5 TeV and 3 TeV,…

Instrumentation and Detectors · Physics 2019-05-08 A. C. Abusleme Hoffman , G. Parès , T. Fritzsch , M. Rothermund , H. Jansen , K. Krüger , F. Sefkow , A. Velyka , J. Schwandt , I. Perić , L. Emberger , C. Graf , A. Macchiolo , F. Simon , M. Szalay , N. van der Kolk , H. Abramowicz , Y. Benhammou , O. Borysov , M. Borysova , A. Joffe , S. Kananov , A. Levy , I. Levy , G. Eigen , R. Bugiel , S. Bugiel , M. Firlej , T. A. Fiutowski , M. Idzik , J. Moroń , K. P. Świentek , P. Terlecki , P. Brückman de Renstrom , B. Turbiarz , T. Wojtoń , L. K. Zawiejski , E. Firu , V. Ghenescu , A. T. Neagu , T. Preda , I. Boyko , Yu. Nefedov , A. Rymbekova , A. Sapronov , G. Shelkov , A. Zhemchugov , A. Ruiz-Jimeno , I. Vila , E. Fullana , J. Fuster , P. Gomis Lopez , M. Perelló , M. A. Villarejo , M. Vos , J. Alozy , N. Alipour Tehrani , D. Arominski , R. Ballabriga Sune , F. Boyer , E. Brondolin , M. Buckland , M. Campbell , D. Dannheim , K. Dette , F. Duarte Ramos , N. Egidos Plaja , K. Elsener , A. Fiergolski , C. Fuentes Rojas , C. Grefe , D. Hynds , W. Klempt , I. Kremastiotis , J. Kröger , S. Kulis , E. Leogrande , L. Linssen , X. Llopart Cudie , A. Lucaci-Timoce , M. Munker , L. Musa , A. Nürnberg , F. -X. Nuiry , E. Perez Codina , H. Pernegger , M. Petrič , F. Pitters , T. Quast , S. Redford , P. Riedler , P. Roloff , A. Sailer , E. Santin , U. Schnoor , E. Sicking , K. Sielewicz , R. Simoniello , W. Snoeys , S. Spannagel , S. Sroka , R. Ström , P. Valerio , S. van Dam , E. van der Kraaij , T. Vǎnát , O. Viazlo , M. Vicente Barreto Pinto , M. A. Weber , M. Williams , K. Wolters , M. Benoit , G. Iacobucci , D M S Sultan , R. R. Bosley , T. Price , M. F. Watson , N. K. Watson , A. G. Winter , J. Goldstein , S. Green , J. S. Marshall , M. A. Thomson , B. Xu , G. Casse , J. Vossebeld , T. Coates , F. Salvatore , J. Repond , L. Xia , C. Kenney , A. Tomada

The mass of the top quark is measured using top-antitop-quark pair events with high transverse momentum top quarks. The dataset, collected with the ATLAS detector in proton--proton collisions at $\sqrt{s}=13$ TeV delivered by the Large…

High Energy Physics - Experiment · Physics 2025-06-16 ATLAS Collaboration

Top quark production in the process $e^+e^- \rightarrow t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a…

High Energy Physics - Experiment · Physics 2013-07-31 M. S. Amjad , M. Boronat , T. Frisson , I. Garcìa Garcìa , R. Pöschl , E. Ros , F. Richard , J. Rouëné , P. Ruiz Femenia , M. Vos

The Compact Linear Collider (CLIC) is a concept for a future linear collider that would provide e$^+$e$^-$ collisions at up to 3 TeV. The physics aims require a detector system with excellent jet energy and track momentum resolution, highly…

Instrumentation and Detectors · Physics 2018-03-05 Florian Pitters

The mass of the top quark is measured using a sample of $\mathrm{t\overline{t}}$ events collected by the CMS detector using proton-proton collisions at $\sqrt{s} =$ 13 TeV at the CERN LHC. Events are selected with one isolated muon or…

High Energy Physics - Experiment · Physics 2022-04-15 CMS Collaboration

The Compact Linear Collider (CLIC) is a TeV-scale high-luminosity linear e$^+$e$^-$ collider studied by the international CLIC and CLICdp collaborations. CLIC uses a two-beam acceleration scheme, in which normal-conducting high-gradient 12…

Top quark production in the process $e^+e^- \to t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed…

High Energy Physics - Experiment · Physics 2015-09-18 M. S. Amjad , S. Bilokin , M. Boronat , P. Doublet , T. Frisson , I. Garcìa Garcìa , M. Perelló , R. Pöschl , F. Richard , E. Ros , J. Rouëné , P. Ruiz Femenia , M. Vos

The Compact Linear Collider (CLIC) is a multi-TeV high-luminosity linear e$^+$e$^-$-collider under development by the CLIC accelerator collaboration, hosted by CERN. The CLIC accelerator has been optimised for three energy stages at…

Following a brief outline of the CLIC project, this talk summarizes some of the principal motivations for an e+ e- collider with E_CM = 3 TeV. It is shown by several examples that CLIC would represent a significant step beyond the LHC and…

High Energy Physics - Phenomenology · Physics 2008-11-11 John Ellis

Most supersymmetric models predict new particles within the reach of the next generation of colliders. For an understanding of the model structure and the mechanism(s) of electroweak symmetry breaking, it is important to know the masses of…

High Energy Physics - Phenomenology · Physics 2007-12-28 A. Sopczak , A. Freitas , C. Milstene , M. Schmitt

The Compact Linear Collider (CLIC) is a proposed TeV-scale high-luminosity electron-positron collider. For an optimal exploitation of its physics potential, CLIC is foreseen to be built and operated in three stages, with centre-of-mass…

High Energy Physics - Experiment · Physics 2019-08-14 Aleksander Filip Zarnecki