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CLIC is a proposed linear e+e- collider designed to provide particle collisions at center-of-mass energies of up to 3 TeV. Precise measurements of the properties of the top quark and the Higgs boson, as well as searches for Beyond the…

Instrumentation and Detectors · Physics 2017-06-21 Simon Spannagel

We describe the anticipated experimental program of an e+e- linear collider in the energy range 500 GeV -- 1.5 TeV. We begin with a description of current collider designs and the expected experimental environment. We then discuss precision…

High Energy Physics - Experiment · Physics 2009-09-29 Hitoshi Murayama , Michael E. Peskin

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

The International Linear Collider (ILC) is the next large project in accelerator based particle physics. It is complementary to the LHC in many aspects. Measurements from both machines together will finally shed light onto the known…

High Energy Physics - Experiment · Physics 2007-05-23 J. List

The design luminosity for the future linear colliders is very demanding and challenging. Beam-based feedback systems will be required to achieve the necessary beam-beam stability and steer the two beams into collision. In particular we have…

Accelerator Physics · Physics 2009-02-18 J. Resta-Lopez , P. N. Burrows , A. Latina , D. Schulte

The physics programme of high energy e+e- linear colliders relies on the accurate identification of fermions in order to study in details the profile of the Higgs boson, search for new particles and probe the multi-TeV mass region by means…

High Energy Physics - Experiment · Physics 2009-10-31 Marco Battaglia

The Compact Linear Collider (CLIC) is a TeV-scale high-luminosity linear $e^+e^-$ collider under development at CERN. Following the CLIC conceptual design published in 2012, this report provides an overview of the CLIC project, its current…

Accelerator Physics · Physics 2019-05-08 The CLIC , CLICdp collaborations , : , T. K. Charles , P. J. Giansiracusa , T. G. Lucas , R. P. Rassool , M. Volpi , C. Balazs , K. Afanaciev , V. Makarenko , A. Patapenka , I. Zhuk , C. Collette , M. J. Boland , A. C. Abusleme Hoffman , M. A. Diaz , F. Garay , 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 , X. Meng , J. Shao , J. Shi , C. Tang , P. Wang , X. Wu , H. Zha , L. Ma , Y. Han , W. Fang , Q. Gu , D. Huang , X. Huang , J. Tan , Z. Wang , Z. Zhao , U. I. Uggerhøj , T. N. Wistisen , A. Aabloo , R. Aare , K. Kuppart , S. Vigonski , V. Zadin , M. Aicheler , E. Baibuz , E. Brücken , F. Djurabekova , P. Eerola , F. Garcia , E. Haeggström , K. Huitu , V. Jansson , I. Kassamakov , J. Kimari , A. Kyritsakis , S. Lehti , A. Meriläinen , R. Montonen , K. Nordlund , K. Österberg , A. Saressalo , J. Väinölä , M. Veske , W. Farabolini , A. Mollard , F. Peauger , J. Plouin , P. Bambade , I. Chaikovska , R. Chehab , N. Delerue , M. Davier , A. Faus-Golfe , A. Irles , W. Kaabi , F. LeDiberder , R. Pöschl , D. Zerwas , B. Aimard , G. Balik , J. -J. Blaising , L. Brunetti , M. Chefdeville , A. Dominjon , C. Drancourt , N. Geoffroy , J. Jacquemier , A. Jeremie , Y. Karyotakis , J. M. Nappa , M. Serluca , S. Vilalte , G. Vouters , A. Bernhard , E. Bründermann , S. Casalbuoni , S. Hillenbrand , J. Gethmann , A. Grau , E. Huttel , A. -S. Müller , P. Peiffer , I. Perić , D. Saez de Jauregui , L. Emberger , C. Graf , F. Simon , M. Szalay , N. van der Kolk , S. Brass , W. Kilian , T. Alexopoulos , T. Apostolopoulos , E. N. Gazis , N. Gazis , V. Kostopoulos , S. Kourkoulis , B. Heilig , J. Lichtenberger , P. Shrivastava , M. K. Dayyani , H. Ghasem , S. S. Hajari , H. Shaker , Y. Ashkenazy , I. Popov , E. Engelberg , A. Yashar , H. Abramowicz , Y. Benhammou , O. Borysov , M. Borysova , A. Levy , I. Levy , D. Alesini , M. Bellaveglia , B. Buonomo , A. Cardelli , M. Diomede , M. Ferrario , A. Gallo , A. Ghigo , A. Giribono , L. Piersanti , A. Stella , C. Vaccarezza , J. de Blas , R. Franceschini , G. D'Auria , S. Di Mitri , T. Abe , A. Aryshev , M. Fukuda , K. Furukawa , H. Hayano , Y. Higashi , T. Higo , K. Kubo , S. Kuroda , S. Matsumoto , S. Michizono , T. Naito , T. Okugi , T. Shidara , T. Tauchi , N. Terunuma , J. Urakawa , A. Yamamoto , R. Raboanary , O. J. Luiten , X. F. D. Stragier , R. Hart , H. van der Graaf , G. Eigen , E. Adli , C. A. Lindstrøm , R. Lillestøl , L. Malina , J. Pfingstner , K. N. Sjobak , A. Ahmad , H. Hoorani , W. A. Khan , S. Bugiel , R. Bugiel , M. Firlej , T. A. Fiutowski , M. Idzik , J. Moroń , K. P. Świentek , P. Brückman de Renstrom , B. Krupa , M. Kucharczyk , T. Lesiak , B. Pawlik , P. Sopicki , B. Turbiarz , T. Wojtoń , L. K. Zawiejski , J. Kalinowski , K. Nowak , A. F. Żarnecki , E. Firu , V. Ghenescu , A. T. Neagu , T. Preda , I. S. Zgura , A. Aloev , N. Azaryan , I. Boyko , J. Budagov , M. Chizhov , M. Filippova , V. Glagolev , A. Gongadze , S. Grigoryan , D. Gudkov , V. Karjavine , M. Lyablin , Yu. Nefedov , A. Olyunin , A. Rymbekova , A. Samochkine , A. Sapronov , G. Shelkov , G. Shirkov , V. Soldatov , E. Solodko , G. Trubnikov , I. Tyapkin , V. Uzhinsky , A. Vorozhtov , A. Zhemchugov , E. Levichev , N. Mezentsev , P. Piminov , D. Shatilov , P. Vobly , K. Zolotarev , I. Božović Jelisavčić , G. Kačarević , G. Milutinović Dumbelović , M. Pandurović , M. Radulović , J. Stevanović , N. Vukasinović , D. -H. Lee , N. Ayala , G. Benedetti , T. Guenzel , U. Iriso , Z. Marti , F. Perez , M. Pont , J. Trenado , A. Ruiz-Jimeno , I. Vila , J. Calero , M. Dominguez , L. Garcia-Tabares , D. Gavela , D. Lopez , F. Toral , C. Blanch Gutierrez , M. Boronat , D. Esperante , E. Fullana , J. Fuster , I. García , B. Gimeno , P. Gomis Lopez , D. González , M. Perelló , E. Ros , M. A. Villarejo , A. Vnuchenko , M. Vos , Ch. Borgmann , R. Brenner , T. Ekelöf , M. Jacewicz , M. Olvegård , R. Ruber , V. Ziemann , D. Aguglia , J. Alabau Gonzalvo , M. Alcaide Leon , N. Alipour Tehrani , M. Anastasopoulos , A. Andersson , F. Andrianala , F. Antoniou , A. Apyan , D. Arominski , K. Artoos , S. Assly , S. Atieh , C. Baccigalupi , R. Ballabriga Sune , D. Banon Caballero , M. J. Barnes , J. Barranco Garcia , A. Bartalesi , J. Bauche , C. Bayar , C. Belver-Aguilar , A. Benot Morell , M. Bernardini , D. R. Bett , S. Bettoni , M. Bettencourt , B. Bielawski , O. Blanco Garcia , N. Blaskovic Kraljevic , B. Bolzon , X. A. Bonnin , D. Bozzini , E. Branger , E. Brondolin , O. Brunner , M. Buckland , H. Bursali , H. Burkhardt , D. Caiazza , S. Calatroni , M. Campbell , N. Catalan Lasheras , B. Cassany , E. Castro , R. H. Cavaleiro Soares , M. Cerqueira Bastos , A. Cherif , E. Chevallay , V. Cilento , R. Corsini , R. Costa , B. Cure , S. Curt , A. Dal Gobbo , D. Dannheim , E. Daskalaki , L. Deacon , A. Degiovanni , G. De Michele , L. De Oliveira , V. Del Pozo Romano , J. P. Delahaye , D. Delikaris , P. G. Dias de Almeida , T. Dobers , S. Doebert , I. Doytchinov , M. Draper , F. Duarte Ramos , M. Duquenne , N. Egidos Plaja , K. Elsener , J. Esberg , M. Esposito , L. Evans , V. Fedosseev , P. Ferracin , A. Fiergolski , K. Foraz , A. Fowler , F. Friebel , J-F. Fuchs , A. Gaddi , D. Gamba , L. Garcia Fajardo , H. Garcia Morales , C. Garion , M. Gasior , L. Gatignon , J-C. Gayde , A. Gerbershagen , H. Gerwig , G. Giambelli , A. Gilardi , A. N. Goldblatt , S. Gonzalez Anton , C. Grefe , A. Grudiev , H. Guerin , F. G. Guillot-Vignot , M. L. Gutt-Mostowy , M. Hein Lutz , C. Hessler , J. K. Holma , E. B. Holzer , M. Hourican , D. Hynds , E. Ikarios , Y. Inntjore Levinsen , S. Janssens , A. Jeff , E. Jensen , M. Jonker , S. W. Kamugasa , M. Kastriotou , J. M. K. Kemppinen , V. Khan , R. B. Kieffer , W. Klempt , N. Kokkinis , I. Kossyvakis , Z. Kostka , A. Korsback , E. Koukovini Platia , J. W. Kovermann , C-I. Kozsar , I. Kremastiotis , J. Kröger , S. Kulis , A. Latina , F. Leaux , P. Lebrun , T. Lefevre , E. Leogrande , L. Linssen , X. Liu , X. Llopart Cudie , S. Magnoni , C. Maidana , A. A. Maier , H. Mainaud Durand , S. Mallows , E. Manosperti , C. Marelli , E. Marin Lacoma , S. Marsh , R. Martin , I. Martini , M. Martyanov , S. Mazzoni , G. Mcmonagle , L. M. Mether , C. Meynier , M. Modena , A. Moilanen , R. Mondello , P. B. Moniz Cabral , N. Mouriz Irazabal , M. Munker , T. Muranaka , J. Nadenau , J. G. Navarro , J. L. Navarro Quirante , E. Nebo Del Busto , N. Nikiforou , P. Ninin , M. Nonis , D. Nisbet , F. X. Nuiry , A. Nürnberg , J. Ögren , J. Osborne , A. C. Ouniche , R. Pan , S. Papadopoulou , Y. Papaphilippou , G. Paraskaki , A. Pastushenko , A. Passarelli , M. Patecki , L. Pazdera , D. Pellegrini , K. Pepitone , E. Perez Codina , A. Perez Fontenla , T. H. B. Persson , M. Petrič , S. Pitman , F. Pitters , S. Pittet , F. Plassard , D. Popescu , T. Quast , R. Rajamak , S. Redford , L. Remandet , Y. Renier , S. F. Rey , O. 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Braun , P. Craievich , M. Dehler , T. Garvey , M. Pedrozzi , J. Y. Raguin , L. Rivkin , R. Zennaro , S. Guillaume , M. Rothacher , A. Aksoy , Z. Nergiz , Ö. Yavas , H. Denizli , U. Keskin , K. Y. Oyulmaz , A. Senol , A. K. Ciftci , V. Baturin , O. Karpenko , R. Kholodov , O. Lebed , S. Lebedynskyi , S. Mordyk , I. Musienko , Ia. Profatilova , V. Storizhko , 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 , T. You , W. A. Gillespie , M. Spannowsky , C. Beggan , V. Martin , Y. Zhang , D. Protopopescu , A. Robson , R. J. Apsimon , I. Bailey , G. C. Burt , A. C. Dexter , A. V. Edwards , V. Hill , S. Jamison , W. L. Millar , K. Papke , G. Casse , J. Vossebeld , T. Aumeyr , M. Bergamaschi , L. Bobb , A. Bosco , S. Boogert , G. Boorman , F. Cullinan , S. Gibson , P. Karataev , K. Kruchinin , K. Lekomtsev , A. Lyapin , L. Nevay , W. Shields , J. Snuverink , J. Towler , E. Yamakawa , V. Boisvert , S. West , R. Jones , N. Joshi , D. Bett , R. M. Bodenstein , T. Bromwich , P. N. Burrows , G. B. Christian , C. Gohil , P. Korysko , J. Paszkiewicz , C. Perry , R. Ramjiawan , J. Roberts , T. Coates , F. Salvatore , A. Bainbridge , J. A. Clarke , N. Krumpa , B. J. A. Shepherd , D. Walsh , S. Chekanov , M. Demarteau , W. Gai , W. Liu , J. Metcalfe , J. Power , J. Repond , H. Weerts , L. Xia , J. Zhang , J. Zupan , J. D. Wells , Z. Zhang , C. Adolphsen , T. Barklow , V. Dolgashev , M. Franzi , N. Graf , J. Hewett , M. Kemp , O. Kononenko , T. Markiewicz , K. Moffeit , J. Neilson , Y. Nosochkov , M. Oriunno , N. Phinney , T. Rizzo , S. Tantawi , J. Wang , B. Weatherford , G. White , M. Woodley

The physics potential of discovering and exploring supersymmetry at future e^+e^- linear colliders is reviewed. Such colliders are planned to start to operate at a center-of-mass energy of 500 GeV to 800 GeV, with a final energy of about 2…

High Energy Physics - Phenomenology · Physics 2014-11-17 Jan Kalinowski

We investigate the discovery prospects of a leptophilic gauge boson Z_l at future $e^+e^-$ colliders, focusing on a comparative study of the Circular Electron-Positron Collider (CEPC) and the International Linear Collider (ILC). This state…

High Energy Physics - Phenomenology · Physics 2025-12-19 Seyit Okan Kara

Future linear colliders designs, ILC and CLIC, are expected to be powerful machines for the discovery of Physics Beyond the Standard Model and subsequent precision studies. However, due to the intense beams (high luminosity, high energy),…

High Energy Physics - Phenomenology · Physics 2013-04-17 Stefano Porto , Anthony Hartin , Gudrid Moortgat-Pick

The Compact Linear Collider (CLIC) is a proposed high-luminosity collider that would collide electrons with their antiparticles, positrons, at energies ranging from a few hundred Giga-electronvolts (GeV) to a few Tera-electronvolts (TeV).…

Accelerator Physics · Physics 2020-04-22 Eva Sicking , Rickard Ström

The Electron-Ion Collider (EIC) is a next-generation accelerator primarily designed to study the internal structure of nucleons through high-precision electron-hadron collisions. In this work, we explore the feasibility of employing a 1 MW…

High Energy Physics - Phenomenology · Physics 2026-03-06 Nishat Fiza , Mehedi Masud , Kim Siyeon , Guang Yang

Important analyses at a future linear collider, including top-quark and W-boson mass measurements will depend upon the precise determination of the luminosity spectrum. This can be done, in principle,in the planned detectors. We review the…

High Energy Physics - Experiment · Physics 2007-05-23 Stewart T. Boogert , David J. Miller

JLC is an e+e- linear collider designed for experiments at Sqrt(s)=500 GeV with a luminosity of up to about 2.5x10^{34}/cm^2/s. In this talk, after describing the parameters of JLC accelerator and detector, the feasibilities of JLC to study…

High Energy Physics - Experiment · Physics 2007-05-23 Akiya Miyamoto

We point out that even the most intense laser beams available today can provide only a very small fraction of the beam energy required to reach the design luminosity for a future e+e- linear collider. This fact seems to have been overlooked…

Accelerator Physics · Physics 2007-05-23 Adrian C. Melissinos

We present the current expectations for the design and physics program of an e+e- linear collider of center of mass energy 500 GeV -- 1 TeV. We review the experiments that would be carried out at this facility and demonstrate its key role…

High Energy Physics - Experiment · Physics 2012-08-27 NLC ZDR Design Group , NLC Physics Working Group , S. Kuhlman

The concept of a laser-guided $e^+e^-$ collider in the high-energy regime is presented and its feasibility discussed. Ultra-intense laser pulses and strong static magnetic fields are employed to unite in one stage the electron and positron…

Atomic Physics · Physics 2016-08-16 Karen Z. Hatsagortsyan , Carsten Müller , Christoph H. Keitel

A linear electron-positron collider operating at TeV scale energies will provide high precision measurements and allow, for example, precision studies of the Higgs boson as well as searches for physics beyond the standard model. A future…

Accelerator Physics · Physics 2019-09-04 Erik Adli

The physics potential is briefly summarized for an e+e- linear collider operating at center-of-mass energies up to \sqrt{s} = 1 TeV and delivering integrated luminosities up to \int L = 0.5 ab^(-1) in one to two years. This machine will…

High Energy Physics - Phenomenology · Physics 2007-05-23 P. M. Zerwas

The very forward region is one of the most challenging regions to instrument at a future $e^+e^-$ collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated…

Instrumentation and Detectors · Physics 2022-11-24 Ivan Smiljanic , Ivanka Bozovic Jelisavcic , Goran Kacarevic , Natasa Vukasinovic , Ivana Vidakovic , Vladimir Rekovic
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