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The Analogue Hadron Calorimeter (AHCAL) developed by the CALICE collaboration is a scalable engineering prototype for a Linear Collider detector. It is a sampling calorimeter of steel absorber plates and plastic scintillator tiles read out…

Instrumentation and Detectors · Physics 2019-05-22 Felix Sefkow , Frank Simon

The CALICE Analogue Hadron CALorimeter (AHCAL) at the International Linear Collider (ILC) is a high-granularity hadron calorimeter based on scintillator tiles readout by MPPCs. Toward the construction of ILC, the optimization of the AHCAL…

Instrumentation and Detectors · Physics 2019-04-08 Naoki Tsuji

Within the CALICE collaboration, several concepts for the hadronic calorimeter of a future lepton collider detector are studied. After having demonstrated the capabilities of the measurement methods in "physics prototypes", the focus now…

Instrumentation and Detectors · Physics 2019-08-13 Yong Liu

Within the CALICE collaboration, several concepts for the hadronic calorimeter of a future linear collider detector are studied. After having demonstrated the capabilities of the measurement methods in "physics prototypes", the focus now…

Instrumentation and Detectors · Physics 2019-04-26 Christian Graf

The Analogue Hadron Calorimeter (AHCAL) is being developed within the CALICE collaboration for experiments at a future lepton collider. It is a sampling calorimeter with alternating layers of steel absorber plates and plastic scintillator…

Instrumentation and Detectors · Physics 2020-04-02 Olin Pinto

The CALICE collaboration is presently constructing a test hadron calorimeter (HCAL) with 7620 scintillator tiles read out by novel photo-detectors - Silicon Photomultipliers (SiPMs). This prototype is the first device which uses SiPMs on a…

Instrumentation and Detectors · Physics 2008-11-26 M. Danilov

The Analog Hadron Calorimeter (AHCAL) concept developed by the CALICE collaboration is a highly granular sampling calorimeter with \SI{3x3}{\square\centi\meter} plastic scintillator tiles individually read out by silicon photomultipliers…

Instrumentation and Detectors · Physics 2021-05-19 Lorenz Emberger

The Circular Electron Positron Collider (CEPC) is a next-generation electron$-$positron collider proposed for the precise measurement of the properties of the Higgs boson. To emphasize boson separation and jet reconstruction, the baseline…

The basic prototype of a tile hadron calorimeter (HCAL) for the International Linear Collider (ILC) has been realised and extensively tested. A major aspect of the proposed concept is the improvement of the jet energy resolution by…

Instrumentation and Detectors · Physics 2016-10-10 Aliakbar Ebrahimi

The CALICE collaboration investigates diferent technology options for highly granular calorimeters for detectors at a future electron-positron collider. One of the devices constructed and tested by this collaboration is a 1m3 prototype of a…

Instrumentation and Detectors · Physics 2019-08-15 Jaroslav Zalesak

A highly granular hadronic calorimeter (HCAL) based on scintillator tiles with individual readout by silicon photomultipliers (SiPMs) has been constructed by the CALICE collaboration and has been tested extensively in particle beams at…

Instrumentation and Detectors · Physics 2019-08-13 Frank Simon

An analog hadron calorimeter (AHCAL) prototype of 5.3 nuclear interaction lengths thickness has been constructed by members of the CALICE Collaboration. The AHCAL prototype consists of a 38-layer sandwich structure of steel plates and…

Instrumentation and Detectors · Physics 2016-12-13 C. Adloff , Y. Karyotakis , J. Repond , A. Brandt , H. Brown , K. De , C. Medina , J. Smith , J. Li , M. Sosebee , A. White , J. Yu , T. Buanes , G. Eigen , Y. Mikami , O. Miller , N. K. Watson , J. A. Wilson , T. Goto , G. Mavromanolakis , M. A. Thomson , D. R. Ward , W. Yan , D. Benchekroun , A. Hoummada , Y. Khoulaki , M. Oreglia , M. Benyamna , C. Cârloganu , P. Gay , J. Ha , G. C. Blazey , D. Chakraborty , A. Dyshkant , K. Francis , D. Hedin , G. Lima , V. Zutshi , V. A. Babkin , S. N. Bazylev , Yu. I. Fedotov , V. M. Slepnev , I. A. Tiapkin , S. V. Volgin , J. -Y. Hostachy , L. Morin , N. D?Ascenzo , U. Cornett , D. David , R. Fabbri , G. Falley , N. Feege , K. Gadow , E. Garutti , P. Göttlicher , T. Jung , S. Karstensen , V. Korbel , A. -I. Lucaci-Timoce , B. Lutz , N. Meyer , V. Morgunov , M. Reinecke , S. Schätzel , S. Schmidt , F. Sefkow , P. Smirnov , A. Vargas-Trevino , N. Wattimena , O. Wendt , M. Groll , R. -D. Heuer , S. Richter , J. Samson , A. Kaplan , H. -Ch. Schultz-Coulon , W. Shen , A. Tadday , B. Bilki , E. Norbeck , Y. Onel , E. J. Kim , G. Kim , D-W. Kim , K. Lee , S. C. Lee , K. Kawagoe , Y. Tamura , J. A. Ballin , P. D. Dauncey , A. -M. Magnan , H. Yilmaz , O. Zorba , V. Bartsch , M. Postranecky , M. Warren , M. Wing , M. Faucci Giannelli , M. G. Green , F. Salvatore , R. Kieffer , I. Laktineh , M. C Fouz , D. S. Bailey , R. J. Barlow , R. J. Thompson , M. Batouritski , O. Dvornikov , Yu. Shulhevich , N. Shumeiko , A. Solin , P. Starovoitov , V. Tchekhovski , A. Terletski , B. Bobchenko , M. Chadeeva , M. Danilov , O. Markin , R. Mizuk , V. Morgunov , E. Novikov , V. Rusinov , E. Tarkovsky , V. Andreev , N. Kirikova , A. Komar , V. Kozlov , P. Smirnov , Y. Soloviev , A. Terkulov , P. Buzhan , B. Dolgoshein , A. Ilyin , V. Kantserov , V. Kaplin , A. Karakash , E. Popova , S. Smirnov , N. Baranova , E. Boos , L. Gladilin , D. Karmanov , M. Korolev , M. Merkin , A. Savin , A. Voronin , A. Topkar , A. Freyk , C. Kiesling , S. Lu , K. Prothmann , K. Seidel , F. Simon , C. Soldner , L. Weuste , B. Bouquet , S. Callier , P. Cornebise , F. Dulucq , J. Fleury , H. Li , G. Martin-Chassard , F. Richard , Ch. de la Taille , R. Poeschl , L. Raux , M. Ruan , N. Seguin-Moreau , F. Wicek , M. Anduze , V. Boudry , J-C. Brient , G. Gaycken , R. Cornat , D. Jeans , P. Mora de Freitas , G. Musat , M. Reinhard , A. Rougé , J-Ch. Vanel , H. Videau , K-H. Park , J. Zacek , J. Cvach , P. Gallus , M. Havranek , M. Janata , J. Kvasnicka , M. Marcisovsky , I. Polak , J. Popule , L. Tomasek , M. Tomasek , P. Ruzicka , P. Sicho , J. Smolik , V. Vrba , J. Zalesak , Yu. Arestov , V. Ammosov , B. Chuiko , V. Gapienko , Y. Gilitski , V. Koreshev , A. Semak , Yu. Sviridov , V. Zaets , B. Belhorma , M. Belmir , A. Baird , R. N. Halsall , S. W. Nam , I. H. Park , J. Yang , Jong-Seo Chai , Jong-Tae Kim , Geun-Bum Kim , Y. Kim , J. Kang , Y. -J. Kwon , Ilgoo Kim , Taeyun Lee , Jaehong Park , Jinho Sung , S. Itoh , K. Kotera , M. Nishiyama , T. Takeshita , S. Weber , C. Zeitnitz

The Tile Calorimeter (TileCal) of the ATLAS experiment at the LHC is the central hadronic calorimeter designed for reconstruction of hadrons, jets, tau-particles and missing transverse energy. TileCal is a scintillator-steel sampling…

Instrumentation and Detectors · Physics 2017-09-04 Michaela Mlynarikova

An analog hadron calorimeter (AHCAL) prototype of 5.3 nuclear interaction lengths thickness has been designed and constructed by members of the CALICE Collaboration. The AHCAL prototype consists of a 38-layer sandwich structure of steel…

Instrumentation and Detectors · Physics 2010-07-20 Shaojun Lu

The ATLAS Tile Calorimeter (TileCal) is the central section of the hadronic calorimeter of the ATLAS experiment at LHC. This sampling calorimeter uses steel plates as absorber and scintillating tiles as active medium. The light produced by…

Instrumentation and Detectors · Physics 2019-09-04 Marija Marjanovic

The Tile Calorimeter (TileCal) is a sampling hadronic calorimeter covering the central region of the ATLAS experiment. TileCal uses steel as absorber and plastic scintillators as active medium. The scintillators are read-out by the…

Instrumentation and Detectors · Physics 2021-05-20 Merve Nazlim Agaras

We present light yield and uniformity measurements of square and hexagonal tiles read out with silicon photomultipliers via a Y11 wavelength-shifting fiber or directly from the side or from the center at the top face. All tiles are 3~mm…

Instrumentation and Detectors · Physics 2020-08-26 Gerald Eigen , Graham R. Lee

TileCal is the hadronic calorimeter covering the most central region of the ATLAS experiment at the LHC. This sampling calorimeter uses iron plates as absorber and plastic scintillating tiles as the active material. A multi-faceted…

Instrumentation and Detectors · Physics 2012-12-18 Olof Lundberg

The CALICE collaboration is developing highly granular electromagnetic and hadronic calorimeters for detectors at future energy frontier electron-positron colliders. After successful tests of a physics prototype, a technological prototype…

Instrumentation and Detectors · Physics 2022-10-03 CALICE Collaboration

The High Luminosity Large Hadron Collider (HL-LHC) will have a peak luminosity of $5\times10^{34} $cm$^{-2} $\,s$^{-1}$, five times higher than the design luminosity of the LHC. The hadronic ATLAS Tile Calorimeter TileCal) is a sampling…

Instrumentation and Detectors · Physics 2020-10-29 Eduardo Valdes Santurio
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