English
Related papers

Related papers: Tracking and Vertexing at a High Energy Linear Col…

200 papers

The harsh machine background at the Compact Linear Collider (CLIC) forms a strong constraint on the design of the innermost part of the tracker. For the CLIC Conceptual Design Report, the detector concepts developed for the International…

Instrumentation and Detectors · Physics 2012-03-06 D. Dannheim , A. Sailer , J. Trenado , M. Vos

Significant progress has been made to develop silicon pixel technologies for use in the vertex and tracker regions of the proposed Compact Linear Collider (CLIC) detector design. The electron-positron collisions generated by this linear…

Instrumentation and Detectors · Physics 2020-04-22 Morag Williams

Detectors at future e+e- collider need special calorimeters in the very forward region for a fast estimate and precise measurement of the luminosity, to improve the hermeticity and mask the central tracking detectors from backscattered…

Instrumentation and Detectors · Physics 2012-02-01 Ivanka Bozovic-Jelisavcic

Several future high-energy physics facilities are currently being planned. The proposed projects include high energy $e^+ e^-$ circular and linear colliders, hadron colliders and muon colliders, while the Electron-Ion Collider (EIC) has…

The depleted CMOS sensors are emerging as one of the main candidate technologies for future tracking detectors in high luminosity colliders. Its capability of integrating the sensing diode into the CMOS wafer hosting the front-end…

Instrumentation and Detectors · Physics 2019-10-17 Ricardo Marco Hernandez

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

Tracking detectors are of vital importance for collider-based high energy physics (HEP) experiments. The primary purpose of tracking detectors is the precise reconstruction of charged particle trajectories and the reconstruction of…

Instrumentation and Detectors · Physics 2022-10-20 A. Affolder , A. Apresyan , S. Worm , M. Albrow , D. Ally , D. Ambrose , E. Anderssen , N. Apadula , P. Asenov , W. Armstrong , M. Artuso , A. Barbier , P. Barletta , L. Bauerdick , D. Berry , M. Bomben , M. Boscardin , J. Brau , W. Brooks , M. Breidenbach , J. Buckley , V. Cairo , R. Caputo , L. Carpenter , M. Centis-Vignali , M. Cerullo , A. Collu , F. Chlebana , G. -F. Dalla-Betta , M. Demarteau , G. Deptuch , K. Di Petrillo , G. D'Amen , A. Dragone , N. T. Fourches , M. Garcia-Sciveres , G. Giacomini , C. Gingu , N. Graf , C. Grace , S. Griso , L. Greiner , C. Haber , G. Haller , K. Harris , T. Heim , U. Heinz , R. Heller , M. T. Hedges , R. Herbst , M. R. Hoeferkamp , T. Holmes , S. E. Holland , S. -C. Hsu , R. Islam , M. Jadhav , S. Jindariani , S. Joosten , A. Jung , S. Karmarkar , C. Kenney , C. Kierans , J. Kim , S. Kim , S. Klein , A. Koshy , K. Krizka , A. Lai , L. Lee , L. Linssen , R. Lipton , T. Liu , C. Madrid , T. Mahajan , T. Markiewicz , B. Markovic , S. Mazza , M. Mazziotta , Y. Mei , P. Merkel , J. Metcalfe , Z. -E. Meziani , A. Minns , F. Moscatelli , P. Murat , J. Muth , B. Nachman , S. Nahn , M. Narain , E. A. Narayanan , T. Nelson , J. Nielsen , S. Oktyabrsky , J. Ott , F. R. Palomo , D. Passeri , R. Patti , T. Peltola , C. Pena , C. Peng , C. Renard , P. Reimer , C. Rogan , L. Rota , H. Sadrozinski , J. Segal , A. Schwartzman , B. Schumm , M. Scott , S. Seidel , A. Seiden , B. Sekely , X. Shi , E. Sichtermann , N. Sinev , J. Sonneveld , L. Spiegel , A. Steinhebel , D. Strom , D. M. S. Sultan , A. Sumant , V. Tokranov , A. Tricoli , W. Trischuk , A. Tumasyan , L. Uplegger , C. Vernieri , H. Wang , P. Wagenknecht , H. Weber , S. Xie , M. Yakimov , Z. Ye , C. Young , M. Zurek

Charge Coupled Devices (CCDs) have been successfully used in several high energy physics experiments over the past two decades. Their high spatial resolution and thin sensitive layers make them an excellent tool for studying short-lived…

A central tracker based on silicon microstrip sensors has been envisaged for the e+e- linear collider experiments. A full simulation program based on GEANT4 has been developed to study performance of the tracker. We report some preliminary…

High Energy Physics - Experiment · Physics 2007-05-23 M. Iwasaki

This report reviews current trends in the R&D of semiconductor pixellated sensors for vertex tracking and radiation imaging. It identifies requirements of future HEP experiments at colliders, needed technological breakthroughs and…

The status of the design of a detector for the TESLA collider is presented.

High Energy Physics - Experiment · Physics 2007-05-23 P. N. Burrows

It is argued that the next linear colliders can serve as W factories that may be exploited for precision tests on the properties of the massive gauge bosons. The connection between the probing of the symmetry breaking sector and precise…

High Energy Physics - Phenomenology · Physics 2016-09-06 F. Boudjema

The High-Luminosity LHC will put significant demands on trigger systems. To control trigger thresholds, the CMS Collaboration is designing a novel Level-1 track trigger. The Outer Tracker will use modules with pairs of sensor layers to read…

Instrumentation and Detectors · Physics 2021-11-04 Brent R. Yates

One of the options for an accelerator beyond the LHC is a hadron collider with higher energy. Work is going on to explore accelerator technologies that would make such a machine feasible. This workshop concentrated on the physics and…

This report describes an all-solid state central tracker which is intended for use in a detector at the proposed DESY 500 GeV electron-positron linear collider or a similar accelerator. The precise position measurements from…

High Energy Physics - Experiment · Physics 2007-05-23 Bruce J. King

The successful running of the large area Silicon trackers of ATLAS and CMS at LHC, and the ongoing R&D for the upgrade of these tracking systems, in various stages, over this decade, are a full proof of this technology and of its still…

Instrumentation and Detectors · Physics 2012-03-06 Aurore Savoy-Navarro

The High Luminosity Large Hadron Collider (HL-LHC) at CERN is expected to collide protons at a centre-of-mass energy of 14\,TeV and to reach the unprecedented peak instantaneous luminosity of 5\,$-$\,7.5\,x\,$10^{34}$\,cm$^{-2}$s$^{-1}$…

Instrumentation and Detectors · Physics 2020-04-22 Alessandro La Rosa

TeV center of mass energy lepton-hadron collider is necessary both to clarify fundamental aspects of strong interactions and for adequate interpretation of the LHC data. Recently proposed QCD Explorer utilizes the energy advantage of the…

Accelerator Physics · Physics 2014-11-18 H. Karadeniz , S. Sultansoy

Linear colliders offer a unique possibility to study gamma gamma and gamma electron interactions at the energies 0.1--2 TeV. This option is now included in design reports of NLC, JLC and TESLA/SBLC. This paper includes: status of photon…

High Energy Physics - Experiment · Physics 2009-10-31 Valery Telnov

We present results from luminosity, energy and polarization studies at a future Linear Collider. We compare e+e- and e-e- modes of operation and consider both NLC and TESLA beam parameter specifications at a center-of-mass energy of 500…

Accelerator Physics · Physics 2009-11-10 M. Woods , A. Florimonte , K. C. Moffeit , T. O. Raubenheimer , A. Seryi , C. Sramek