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Related papers: Silicon Technologies for the CLIC Vertex Detector

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Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our knowledge of top quark properties and open a new window on physics beyond the Standard Model. In this contribution the top quark physics…

High Energy Physics - Experiment · Physics 2016-11-15 Aleksander Filip Zarnecki

CMOS Pixel Sensors tend to become relevant for a growing spectrum of charged particle detection instruments. This comes mainly from their high granularity and low material budget. However, several potential applications require a higher…

The Compact Linear Collider, CLIC, is a multi-TeV electron-positron collider proposed for construction at CERN. A detector model, CLICdet, that is suited for the experimental conditions at CLIC and is based on realistic performance, has…

High Energy Physics - Experiment · Physics 2019-09-30 Emilia Leogrande , Philipp Roloff , Ulrike Schnoor , Matthias Weber

The aim of the future linear colliders is to extend the sensitivity to new physics beyond the reach of the LHC. Several models predict the existence of new vector resonances in the multi-TeV region. We review the existing limits on the…

High Energy Physics - Phenomenology · Physics 2007-05-23 Stefania De Curtis

Conformal tracking is an innovative track finding strategy adopted for the detector at the Compact Linear Collider (CLIC), a proposed future electron-positron collider. It features a pattern recognition in a conformal-mapped plane using the…

Instrumentation and Detectors · Physics 2019-08-03 Erica Brondolin

The proposed high-luminosity, circular electron-positron collider, FCC-ee, provides unparalleled opportunities for precise exploration of Higgs, electroweak, top, flavour, and beyond standard model physics. Very advanced detector systems…

High Energy Physics - Experiment · Physics 2025-08-06 Mogens Dam

3D silicon detectors are characterized by cylindrical electrodes perpendicular to the surface and penetrating into the bulk material in contrast to standard Si detectors with planar electrodes on its top and bottom. This geometry renders…

The DEPFET collaboration develops highly granular, ultra-transparent active pixel detectors for high-performance vertex reconstruction at future collider experiments. The characterization of detector prototypes has proven that the key…

We have developed a silicon pixel detector to enhance the physics capabilities of the PHENIX experiment. This detector, consisting of two layers of sensors, will be installed around the beam pipe at the collision point and covers a…

The Circular Electron-Positron Collider (CEPC), as the next-generation electron-positron collider, is tasked with advancing not only Higgs physics but also the discovery of new physics. Achieving these goals requires high-precision…

Together with the recent CLIC detector model CLICdet a new software suite was introduced for the simulation and reconstruction of events in this detector. This note gives a brief introduction to CLICdet and describes the CLIC experimental…

We realize a phenomenological study to examine the sensitivity on the magnetic moment and electric dipole moment of the top quark through the processes $\gamma\gamma\rightarrow t \bar{t}$, $e \gamma \rightarrow e \gamma^{*} \gamma…

High Energy Physics - Phenomenology · Physics 2017-09-20 A. A. Billur , M. Köksal , A. Gutiérrez-Rodríguez

In order to fully exploit the Physics potential of future e+ e- linear collider, a Vertex Detector providing high resolution track reconstruction is required. Hybrid Silicon pixel detectors are an attractive option for the sensor technology…

High Energy Physics - Experiment · Physics 2009-11-07 M. Battaglia , M. Caccia , S. Borghi , R. Campagnolo , W. Kucewicz , H. Palka , A. Zalewska

The Compact Linear Collider (CLIC) is an option for a future e+e- collider operating at centre-of-mass energies up to 3 TeV, providing sensitivity to a wide range of new physics phenomena and precision physics measurements at the energy…

High Energy Physics - Experiment · Physics 2017-07-19 H. Abramowicz , A. Abusleme , K. Afanaciev , N. Alipour Tehrani , C. Balázs , Y. Benhammou , M. Benoit , B. Bilki , J. -J. Blaising , M. J. Boland , M. Boronat , O. Borysov , I. Božović-Jelisavčić , M. Buckland , S. Bugiel , P. N. Burrows , T. K. Charles , W. Daniluk , D. Dannheim , R. Dasgupta , M. Demarteau , M. A. Díaz Gutierrez , G. Eigen , K. Elsener , U. Felzmann , M. Firlej , E. Firu , T. Fiutowski , J. Fuster , M. Gabriel , F. Gaede , I. García , V. Ghenescu , J. Goldstein , S. Green , C. Grefe , M. Hauschild , C. Hawkes , D. Hynds , M. Idzik , G. Kačarević , J. Kalinowski , S. Kananov , W. Klempt , M. Kopec , M. Krawczyk , B. Krupa , M. Kucharczyk , S. Kulis , T. Laštovička , T. Lesiak , A. Levy , I. Levy , L. Linssen , S. Lukić , A. A. Maier , V. Makarenko , J. S. Marshall , V. J. Martin , K. Mei , G. Milutinović-Dumbelović , J. Moroń , A. Moszczyński , D. Moya , R. M. Münker , A. Münnich , A. T. Neagu , N. Nikiforou , K. Nikolopoulos , A. Nürnberg , M. Pandurović , B. Pawlik , E. Perez Codina , I. Peric , M. Petric , F. Pitters , S. G. Poss , T. Preda , D. Protopopescu , R. Rassool , S. Redford , J. Repond , A. Robson , P. Roloff , E. Ros , O. Rosenblat , A. Ruiz-Jimeno , A. Sailer , D. Schlatter , D. Schulte , N. Shumeiko , E. Sicking , F. Simon , R. Simoniello , P. Sopicki , S. Stapnes , R. Ström , J. Strube , K. P. Świentek , M. Szalay , M. Tesař , M. A. Thomson , J. Trenado , U. I. Uggerhøj , N. van der Kolk , E. van der Kraaij , M. Vicente Barreto Pinto , I. Vila , M. Vogel Gonzalez , M. Vos , J. Vossebeld , M. Watson , N. Watson , M. A. Weber , H. Weerts , J. D. Wells , L. Weuste , A. Winter , T. Wojtoń , L. Xia , B. Xu , A. F. Żarnecki , L. Zawiejski , I. -S. Zgura

The hybrid architecture of the Timepix (TPX) family of detectors enables the use of different semiconductor sensors, most commonly silicon (Si), as well as high-density materials such as Cadmium Telluride (CdTe) or Gallium Arsenide (GaAs).…

The Drive Beam Linac of the Compact Linear Collider (CLIC) has to accelerate an electron beam with 4.2 A up to 2.4 GeV in almost fully-loaded structures. The pulse contains about 70000 bunches, one in every second rf bucket, and has a…

Accelerator Physics · Physics 2012-02-28 Avni Aksoy

In this lecture, the physics potential for the e+e- linear collider experiments ILC and CLIC is reviewed. The experimental conditions are compared to those at hadron colliders and their intrinsic value for precision experiments,…

Accelerator Physics · Physics 2019-08-14 Strahinja Lukić

The Electron-Ion Collider (EIC) will be the next frontier project of nuclear physics in the United States. It is planned to be built in the Brookhaven National Laboratory (BNL) in close collaboration with Jefferson Lab. One of the key…

Instrumentation and Detectors · Physics 2022-02-15 Greg Kalicy

A prototype of the CMOS pixel sensor named SUPIX-1 has been fabricated and tested in order to investigate the feasibility of a pixelated tracker for a proposed Higgs factory, namely, the Circular Electron-Positron Collider (CEPC). The…

Instrumentation and Detectors · Physics 2022-01-05 L. Li , L. Zhang , J. N. Dong , J. Liu , M. Wang

The future of high-precision electroweak physics lies in e+e- collider measurements of properties of the Z boson, the W boson, the Higgs boson, and the top quark. We estimate the expected performance of three possible future colliders: the…

High Energy Physics - Phenomenology · Physics 2015-09-09 JiJi Fan , Matthew Reece , Lian-Tao Wang