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This exposition provides a detailed picture of ongoing and planned activities towards the development of a detector for a high-energy Linear Collider. Cases for which research and development activity does not exist, or needs to be…

High Energy Physics - Experiment · Physics 2010-01-05 Bruce A. Schumm

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

Particle acceleration in dielectric microstructures powered by infrared lasers, or "dielectric laser acceleration" (DLA), is a promising area of advanced accelerator research with the potential to enable more affordable and higher-gradient…

Accelerator Physics · Physics 2022-05-18 R. J. England , U. Niedermayer , L. Schachter , T. Hughes , P. Musumeci , R. K. Li , W. D. Kimura

The International Large Detector, ILD, is a detector concept which has been developed for the electron-positron collider ILC. The detector has been optimized for precision physics in a range of energies between 90 GeV and 1 TeV. ILD…

Instrumentation and Detectors · Physics 2019-12-11 The ILD Collaboration , contact Ties Behnke

The design of the proposed linear collider TESLA is based on 9-cell 1.3 GHz superconducting niobium cavities, operated in pulsed mode. Within the framework of an international collaboration the TESLA Test Facility (TTF) has been set up at…

Accelerator Physics · Physics 2007-05-23 M. Liepe

An electron-positron linear collider in the energy range between 500 and 1000 GeV is of crucial importance to precisely test the Standard Model and to explore the physics beyond it. The physics program is complementary to that of the Large…

High Energy Physics - Experiment · Physics 2009-11-07 R. -D. Heuer

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

In this article, we describe the key features of the recently completed technical design for the International Linear Collider (ILC), a 200-500 GeV linear electron-positron collider (expandable to 1 TeV) that is based on 1.3 GHz…

Accelerator Physics · Physics 2013-11-15 Barry Barish , James E. Brau

Studies of the physics potential of the Future Linear Collider are establishing a broad programme which will start in the region of 350 to 500 GeV C. of M. energy. The main goal is to understand why the standard model works; by studying the…

High Energy Physics - Phenomenology · Physics 2007-05-23 D J Miller

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 baseline configuration of the International Linear Collider requires 2 beam dumps per interaction region, each rated to 18MW of beam power, together with additional beam dumps for tuning purposes and machine protection. The baseline…

Accelerator Physics · Physics 2014-11-18 R. Appleby , J. R. J. Bennett , T. Broome , C. Densham , H. Vincke

The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1.3 GHz superconducting niobium cavities with an accelerating gradient of Eacc >= 25 MV/m at a quality factor Q0 > 5E+9. The design goal for…

Accelerator Physics · Physics 2009-11-06 B. Aune

I review progress on investigations concerning top quark physics and QCD at a future linear e+e- collider that has been achieved since the presentation of the TESLA technical design report in spring 2001. I concentrate on studies that have…

High Energy Physics - Phenomenology · Physics 2007-05-23 A. Brandenburg

This report summarizes the progress in the study of Higgs physics at a future linear electron positron collider at center-of-mass energies up to about 1000 GeV and high luminosity. After the publication of the TESLA Technical Design Report,…

High Energy Physics - Phenomenology · Physics 2007-05-23 K. Desch

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

Construction of the TESLA linear electron-positron collider tangentially to the HERA proton ring will provide a number of new facilities for particle and nuclear physics research. In this paper main parameters and physics goals of eA,…

Nuclear Experiment · Physics 2007-05-23 S. Sultansoy

The ILD detector is proposed for an electron-positron collider with collision centre-of-mass energies from 90~\GeV~to about 1~\TeV. It has been developed over the last 10 years by an international team of scientists with the goal to design…

Instrumentation and Detectors · Physics 2020-03-04 The ILD Collaboration

Laser plasma accelerators have the potential to reduce the size of future linacs for high energy physics by more than an order of magnitude, due to their high gradient. Research is in progress at current facilities, including the BELLA…

Accelerator Physics · Physics 2013-10-01 C. G. R. Geddes , J. -L. Vay , C. B. Schroeder , E. Esarey , W. P. Leemans

New physics is being explored with the Large Hadron Collider at CERN and with Intensity Frontier programs at Fermilab and KEK. The energy scale for new physics is known to be in the multi-TeV range, signaling the need for a future collider…

Accelerator Physics · Physics 2017-04-28 Sandra Oliveros , Don Summers , Lucien Cremaldi , John Acosta , David Neuffer

The International Large Detector (ILD) is a concept for a detector at the International Linear Collider, ILC. The ILC will collide electrons and positrons at energies of initially 500 GeV, upgradeable to 1 TeV. The ILC has an ambitious…

High Energy Physics - Experiment · Physics 2012-08-27 The ILD Concept Group