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This paper describes a comprehensive experimental study on viability and prospects for the measurement of electroweak observables in $e^{+}e^{-}\rightarrow b\bar{b}$ and $e^{+}e^{-}\rightarrow c\bar{c}$ processes at the International Linear…

High Energy Physics - Experiment · Physics 2023-12-20 A. Irles , R. Pöschl , F. Richard

This Resource Book reviews the physics opportunities of a next-generation e+e- linear collider and discusses options for the experimental program. Part 1 contains the table of contents and introduction and gives a summary of the case for a…

High Energy Physics - Experiment · Physics 2007-05-23 T. Abe

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 exploration of fundamental questions in particle physics at the energy frontier with a future TeV-scale e+e- linear collider based on the Compact Linear Collider (CLIC) two-beam acceleration technology. A…

Instrumentation and Detectors · Physics 2012-09-13 P. Lebrun , L. Linssen , A. Lucaci-Timoce , D. Schulte , F. Simon , S. Stapnes , N. Toge , H. Weerts , J. Wells

We describe another detectora designed for the International Linear Collider based on several tested instrumentation innovations in order to achieve the necessary experi- mental goal of a detecter that is 2-to-10 times better than the…

The R&D Collaboration SiLC (Silicon tracking for Linear Colliders) is based on generic R&D aiming to develop the next generation of large Silicon tracking systems for the Linear collider experiments; it serves all three ILC detector…

Instrumentation and Detectors · Physics 2009-03-26 Aurore Savoy-Navarro

This document provides input from the CLIC e+e- linear collider studies to the update process of the European Strategy for Particle Physics. It is submitted on behalf of the CLIC/CTF3 collaboration and the CLIC physics and detector study.…

The International Linear Collider (ILC) being proposed in Japan is an electron-positron linear collider with an initial energy of 250 GeV. The ILC accelerator is based on the technology of superconducting radio-frequency cavities. This…

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 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 2019-03-22 M. Aicheler , P. N. Burrows , N. Catalan , R. Corsini , M. Draper , J. Osborne , D. Schulte , S. Stapnes , M. J. Stuart

Calorimeters with silicon detectors have many unique features and are proposed for several world-leading experiments. We describe the R&D program of the large scale detector element with up to 12 000 readout channels for the International…

Instrumentation and Detectors · Physics 2018-04-18 V. Balagura

The International Linear e+e- Collider (ILC) could go into operation in the second half of the upcoming decade. Experimental analyses and theory calculations for the physics at the ILC are currently performed. We review recent progress, as…

High Energy Physics - Phenomenology · Physics 2008-11-26 S. Heinemeyer

This paper is not a proposal for a CERN future project but provides information on the International Linear Collider (ILC) considered for Japan in order to facilitate the European Strategy discussion in a global context. It describes…

High Energy Physics - Experiment · Physics 2025-06-06 Y. Abe , S. Arai , S. Araki , H. Araki , Y. Arimoto , A. Aryshev , S. Asai , R. Bajpai , T. Behnke , S. Belomestnykh , I. Bozovic , J. E. Brau , K. Buesser , P. N. Burrows , N. Catalan-Lasheras , E. Cenni , S. Chen , J. Clark , D. Delikaris , M. Demarteau , D. Denisov , S. Doebert , T. Dohmae , R. Dowd , G. Dugan , M. Egi , Y. Enomoto , A. Faus Golfe , F. Forti , K. Fujii , M. Fukuda , F. Gaede , Y. Gao , L. Garcia-Tabares , R. L. Geng , T. Goto , J. Grames , K. Hanagaki , T. Hara , K. Hara , C. Hensel , M. Hiraki , S. Hirose , T. Honma , Y. Horii , K. Inami , M. Ishino , H. Ito , M. Iwasaki , D. Jeans , O. Jinnouchi , R. Katayama , K. Kawagoe , S. Kessoku , T. Kitahara , T. Koseki , K. Krueger , T. Kubo , K. Kubo , A. Kumar , M. Kurata , M. Kuriki , A. J. Lankford , A. Latina , R. Laxdal , M. Liepe , J. List , B. List , C. Madec , J. Maeda , T. W. Markiewicz , T. Masubuchi , T. Matsumoto , K. Mazumdar , P. McBride , P. A. McIntosh , S. Michizono , T. Miura , L. Monaco , G. Moortgat-Pick , T. Mori , Y. Morikawa , H. Murayama , T. Nakada , H. Nakai , H. Nakajima , E. Nakamura , K. Nakamura , K. Nakanishi , T. Nakaya , O. Napoly , S. Narita , M. Nojiri , H. Oide , Y. Okada , T. Okugi , C. Oliver Amoros , M. Omet , W. Ootani , J. Osborne , B. Parker , J. R. Patterson , R. Pöschl , M. E. Peskin , K. Popov , S. Posen , S. Riemann , R. A. Rimmer , A. Robson , M. C. Ross , R. Ruber , D. L. Rubin , T. Saeki , N. Saito , H. Sakai , T. Sanuki , M. Sato , S. Shanab , H. Shimizu , P. Sievers , F. Simon , N. Solyak , S. Stapnes , J. Strube , T. Suehara , R. Takahashi , T. Takahashi , G. Taylor , N. Terunuma , J. Tian , M. Titov , M. Togawa , K. Tsumura , R. Ueki , K. Umemori , P. Urquijo , Y. Ushiroda , C. Vernieri , E. Viklund , M. Vos , N. Walker , Y. Watanabe , H. Weise , A. P. White , T. Yamada , A. Yamamoto , Y. Yamamoto , M. Yamauchi , K. Yokoya , A. F. Zarnecki , J. Zhang , M. Zobov

This document provides detailed information on the status of Advanced and Novel Accelerators techniques and describes the steps that need to be envisaged for their implementation in future accelerators, in particular for high energy physics…

Accelerator Physics · Physics 2019-01-31 ALEGRO collaboration

The 4th Concept detector presently being designed for the International Linear Collider introduces several innovations in order to achieve the necessary experimental goal of a detecter that is 2-to-10 times better than the already excellent…

High Energy Physics - Experiment · Physics 2007-08-06 Sung Keun Park , Franco Grancagnolo , John Hauptman , Alexander Mikhailichenko , Nural Akchurin

The International Linear Collider (ILC) is a proposed electron -- positron collider with a collision energy of $\sqrt{s}$ = 500 GeV in the baseline configuration. The ILC physics program takes full advantage of the fact that the machine can…

High Energy Physics - Experiment · Physics 2015-11-23 Jan Strube

International Linear Collider (ILC) is an electron-positron collider with the initial center-of-mass energy of 500 GeV which is upgradable to about 1 TeV later on. Its goal is to study the physics at TeV scale with unprecedented high…

High Energy Physics - Phenomenology · Physics 2008-11-26 Hitoshi Yamamoto

We present an overview of the capabilities that the International Linear Collider (ILC) offers for precision measurements that probe the Standard Model. First, we discuss the improvements that the ILC will make in precision electroweak…

The TESLA Technical Design Report Part III: Physics at an e+e- Linear Collider

High Energy Physics - Phenomenology · Physics 2007-05-23 R. -D. Heuer , D. J. Miller , F. Richard , P. M. Zerwas , J. A. Aguilar-Saavedra , J. Alcaraz , A. Ali , S. Ambrosanio , A. Andreazza , J. Andruszkow , B. Badelek , A. Ballestrero , T. Barklow , A. Bartl , M. Battaglia , T. Behnke , G. Belanger , D. Benson , M. Berggren , W. Bernreuther , M. Besancon , J. Biebel , O. Biebel , I. Bigi , J. J. van der Bij , T. Binoth , G. A. Blair , C. Blochinger , J. Blumlein , M. Boonekamp , E. Boos , G. Borissov , A. Brandenburg , J. -C. Brient , G. Bruni , K. Busser , P. Burrows , R. Casalbuoni , C. Castanier , P. Chankowski , A. Chekanov , R. Chierici , S. Y. Choi , P. Christova , P. Ciafaloni , D. Comelli , G. Conteras , M. Danilov , W. Da Silva , A. Deandrea , W. de Boer , S. De Curtis , S. J. De Jong , A. Denner , A. De Roeck , K. Desch , E. De Wolf , S. Dittmaier , V. Djordjadze , A. Djouadi , D. Dominici , M. Doncheski , M. T. Dova , V. Drollinger , H. Eberl , J. Erler , A. Eskreys , J. R. Espinosa , N. Evanson , E. Fernandez , J. Forshaw , H. Fraas , F. Franke , A. Freitas , F. Gangemi , P. Garcia-Abia , R. Gatto , P. Gay , T. Gehrmann , A. Gehrmann-De Ridder , U. Gensch , N. Ghodbane , I. F. Ginzburg , R. Godbole , S. Godfrey , G. Gounaris , M. Grazzini , E. Gross , B. Grzadkowski , J. Guasch , J. F. Gunion , K. Hagiwara , T. Han , K. Harder , R. Harlander , R. Hawkings , S. Heinemeyer , S. Hesselbach , C. A. Heusch , J. Hewett , G. Hiller , A. Hoang , W. Hollik , J. I. Illana , V. A. Ilyin , D. Indumathi , S. Ishihara , M. Jack , S. Jadach , F. Jegerlehner , M. Jezabek , G. Jikia , L. Jonsson , P. Jankowski , P. Jurkiewicz , A. Juste , A. Kagan , J. Kalinowski , M. Kalmykov , P. Kalyniak , B. Kamal , J. Kamoshita , S. Kanemura , F. Kapusta , S. Katsanevas , R. Keranen , V. Khoze , A. Kiiskinen , W. Kilian , M. Klasen , J. L. Kneur , B. A. Kniehl , M. Kobel , K. Kolodziej , M. Kramer , S. Kraml , M. Krawczyk , J. H. Kuhn , J. Kwiecinski , P. Laurelli , A. Leike , J. Letts , W. Lohmann , S. Lola , P. Lutz , P. Mattig , W. Majerotto , T. Mannel , M. Martinez , H. -U. Martyn , T. Mayer , B. Mele , M. Melles , W. Menges , G. Merino , N. Meyer , D. J. Miller , P. Minkowski , R. Miquel , K. Monig , G. Montagna , G. Moortgat-Pick , P. Mora de Freitas , G. Moreau , M. Moretti , S. Moretti , L. Motyka , G. Moultaka , M. Muhlleitner , U. Nauenberg , R. Nisius , H. Nowak , T. Ohl , R. Orava , J. Orloff , P. Osland , G. Pancheri , A. A. Pankov , C. Papadopoulos , N. Paver , D. Peralta , H. T. Phillips , F. Picinini , W. Placzek , M. Pohl , W. Porod , A. Pukhov , A. Raspereza , D. Reid , S. Riemann , T. Riemann , S. Rosati , M. Roth , S. Roth , C. Royon , R. Ruckl , E. Ruiz-Morales , M. Sachwitz , J. Schieck , H. -J. Schreiber , D. Schulte , M. Schumacher , R. D. Settles , M. Seymour , R. Shanidze , T. Sjostrand , M. Skrzypek , S. Soldner-Rembold , A. Sopczak , H. Spiesberger , M. Spira , H. Steiner , M. Stratmann , Y. Sumino , S. Tapprogge , V. Telnov , T. Teubner , A. Tonazzo , C. Troncon , O. Veretin , C. Verzegnassi , A. Vest , A. Vicini , H. Videau , W. Vogelsang , A. Vogt , H. Vogt , D. Wackeroth , A. Wagner , S. Wallon , G. Weiglein , S. Weinzierl , T. Wengler , N. Wermes , A. Werthenbach , G. Wilson , M. Winter , A. F. Zarnecki , B. Ziaja , J. Zochowski

The International Linear Collider is now proposed with a staged machine design, with the first stage at 250 GeV with a luminosity goal of 2 ab-1. In this paper, we review the physics expectations for this machine. These include precision…