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Calorimetry at future linear colliders could be based on a particle flow approach where granularity is the key to high jet energy resolution. Among different technologies, Micromegas chambers with 1 cm2 pad segmentation are studied for the…

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

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 gas detector glass resistivity parallel chamber (GRPC) is proposed to use in the Hadron calorimeter (HCAL), the read-out system is based on the semi-digital system, then the charge information from GRPC is needed. To better understand…

Instrumentation and Detectors · Physics 2013-06-11 Han Ran

The CALICE analog HCAL is a highly granular calorimeter, proposed for the International Linear Collider. It is based on scintillator tiles, read out by silicon photomultipliers (SiPMs). The effects of gaps between the calorimeter tiles, as…

Instrumentation and Detectors · Physics 2010-06-21 Felix Sefkow , Angela Lucaci-Timoce

A silicon-based fine granularity calorimeter is a potential technology for the future International Linear Collider ILC, the future circular collider CEPC, and is also the chosen technology for the upgraded CMS experiment of the Large…

Instrumentation and Detectors · Physics 2017-08-02 Stathes Paganis , Andreas Psallidas , Arnaud Steen

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

The recent progress in R&D of the Micromegas detectors for hadronic calorimetry including new engineering-technical solutions, electronics development, and accompanying simulation studies with emphasis on the comparison of the physics…

The Tile Calorimeter (TileCal) is the hadronic calorimeter covering the central region of the ATLAS detector at the LHC. It is a sampling calorimeter consisting of alternating thin steel plates and scintillating tiles. Wavelength shifting…

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

To address the challenges of providing high performance calorimetry in future hadron collider experiments under conditions of high luminosity and high radiation (FCChh environments), we are conducting R&D on advanced calorimetry techniques…

Digital and Semi-Digital Hadronic Calorimeters (S)DHCAL were suggested for future Colliders as part of the particle-flow concept. Though studied mostly with RPC-based techniques, investigations have shown that MPGD-based sampling elements…

The CALICE collaboration investigates different technology options for highly granular calorimeters for detectors at a future electron-positron collider. One of the devices constructed and tested by the collaboration is a 1m^3 prototype for…

Instrumentation and Detectors · Physics 2019-08-13 Nils Feege

The CALICE collaboration is developing highly granular calorimeters for experiments at a future lepton collider primarily to establish technologies for particle flow event reconstruction. These technologies also find applications elsewhere,…

Instrumentation and Detectors · Physics 2017-06-28 Yong Liu

The CALICE collaboration has constructed a highly granular hadronic calorimeter based on small scintillator tiles read out with silicon photomultipliers. With this detector, data was taken at CERN and at Fermilab. The high granularity of…

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

The data acquisition system (DAQ) for a highly granular analogue hadron calorimeter (AHCAL) for the future International Linear Collider is presented. The developed DAQ chain has several stages of aggregation and scales up to 8 million…

Instrumentation and Detectors · Physics 2019-08-13 Jiri Kvasnicka

A novel method to reconstruct the energy of hadronic showers in the CMS High Granularity Calorimeter (HGCAL) is presented. The HGCAL is a sampling calorimeter with very fine transverse and longitudinal granularity. The active media are…

Instrumentation and Detectors · Physics 2024-12-20 M. Aamir , G. Adamov , T. Adams , C. Adloff , S. Afanasiev , C. Agrawal , C. Agrawal , A. Ahmad , H. A. Ahmed , S. Akbar , N. Akchurin , B. Akgul , B. Akgun , R. O. Akpinar , E. Aktas , A. Al Kadhim , V. Alexakhin , J. Alimena , J. Alison , A. Alpana , W. Alshehri , P. Alvarez Dominguez , M. Alyari , C. Amendola , R. B. Amir , S. B. Andersen , Y. Andreev , P. D. Antoszczuk , U. Aras , L. Ardila , P. Aspell , M. Avila , I. Awad , O. Aydilek , Z. Azimi , A. Aznar Pretel , O. A. Bach , R. Bainbridge , A. Bakshi , B. Bam , S. Banerjee , D. Barney , O. Bayraktar , F. Beaudette , F. Beaujean , E. Becheva , P. K. Behera , A. Belloni , T. Bergauer , M. Besancon , O. Bessidskaia Bylund , L. Bhatt , S. Bhattacharya , D. Bhowmil , F. Blekman , P. Blinov , P. Bloch , A. Bodek , a. Boger , A. Bonnemaison , F. Bouyjou , L. Brennan , E. Brondolin , A. Brusamolino , I. Bubanja , A. Buchot Perraguin , P. Bunin , A. Burazin Misura , A. Butler-nalin , A. Cakir , S. Callier , S. Campbell , Y. B. Candemir , K. Canderan , K. Cankocak , A. Cappati , S. Caregari , S. Carron , C. Carty , A. Cauchois , L. Ceard , S. Cerci , P. J. Chang , R. M. Chatterjee , S. Chatterjee , P. Chattopadhyay , T. Chatzistavrou , M. S. Chaudhary , J. A. Chen , J. Chen , Y. Chen , K. Cheng , H. Cheung , J. Chhikara , A. Chiron , M. Chiusi , D. Chokheli , R. Chudasama , E. Clement , S. Coco Mendez , D. Coko , K. Coskun , F. Couderc , B. Crossman , Z. Cui , T. Cuisset , G. Cummings , E. M. Curtis , M. D'Alfonso , J. Döhler-Ball , O. Dadazhanova , J. Damgov , I. Das , S. Das Gupta , P. Dauncey , A. David Tinoco Mendes , G. Davies , O. Davignon , P. de Barbaro , C. De La Taille , M. De Silva , A. De Wit , P. Debbins , M. M. Defranchis , E. Delagnes , P. Devouge , G. Di Guglielmo , L. Diehl , K. Dilsiz , G. G. Dincer , J. Dittmann , M. Dragicevic , D. Du , B. Dubinchik , S. Dugad , F. Dulucq , I. Dumanoglu , B. Duran , S. Dutta , V. Dutta , A. Dychkant , M. Dünser , T. Edberg , I. T. Ehle , A. El Berni , F. Elias , S. C. Eno , E. N. Erdogan , B. Erkmen , Y. Ershov , E. Y. Ertorer , S. Extier , L. Eychenne , Y. E. Fedar , G. Fedi , J. P. Figueiredo De Sá Sousa De Almeida , B. A. Fontana Santos Alves , E. Frahm , K. Francis , J. Freeman , T. French , F. Gaede , P. K. Gandhi , S. Ganjour , A. Garcia-Bellido , F. Gastaldi , L. Gazi , Z. Gecse , H. Gerwig , O. Gevin , S. Ghosh , S. Ghosh , K. Gill , C. Gingu , S. Gleyzer , N. Godinovic , P. Goettlicher , R. Goff , M. Gok , A. Golunov , B. Gonultas , J. D. González Martínez , N. Gorbounov , L. Gouskos , A. Gray , L. Gray , C. Grieco , S. Groenroos , D. Groner , A. Gruber , A. Grummer , S. Grönroos , D. Guerrero , F. Guilloux , Y. Guler , A. D. Gungordu , J. Guo , K. Guo , E. Gurpinar Guler , H. K. Gutti , A. A. Guvenli , E. Gülmez , B. Hacisahinoglu , Y. Halkin , G. Hamilton Ilha Machado , H. S. Hare , K. Hatakeyama , A. H. Heering , V. Hegde , U. Heintz , N. Hinton , A. Hinzmann , J. Hirschauer , D. Hitlin , J. Hoff , İ. Hos , B. Hou , X. Hou , A. Howard , C. Howe , H. Hsieh , T. Hsu , H. Hua , F. Hummer , M. Imran , J. Incandela , E. Iren , B. Isildak , P. S. Jackson , W. J. Jackson , S. Jain , P. Jana , J. Jaroslavceva , S. Jena , A. Jige , P. P. Jordano , U. Joshi , K. Kaadze , V. Kachanov , A. Kafizov , L. Kalipoliti , A. Kallil Tharayil , O. Kaluzinska , S. Kamble , A. Kaminskiy , M. Kanemura , H. Kanso , Y. Kao , A. Kapic , C. Kapsiak , V. Karjavine , S. Karmakar , A. Karneyeu , M. Kaya , A. Kayis Topaksu , B. Kaynak , Y. Kazhykarim , F. A. Khan , A. Khudiakov , J. Kieseler , R. S. Kim , T. Klijnsma , E. G. Kloiber , M. Klute , Z. Kocak , K. R. Kodali , K. Koetz , T. Kolberg , O. B. Kolcu , J. R. Komaragiri , M. Komm , I. Kopsalis , H. A. Krause , M. A. Krawczyk , T. R. Krishnaswamy Vinayakam , K. Kristiansen , A. Kristic , M. Krohn , B. Kronheim , K. Krüger , C. Kudtarkar , S. Kulis , M. Kumar , N. Kumar , S. Kumar , R. Kumar Verma , S. Kunori , A. Kunts , C. Kuo , A. Kurenkov , V. Kuryatkov , S. Kyre , J. Ladenson , K. Lamichhane , G. Landsberg , J. Langford , A. Laudrain , R. Laughlin , J. Lawhorn , O. Le Dortz , S. W. Lee , A. Lektauers , D. Lelas , M. Leon , L. Levchuk , A. J. Li , J. Li , Y. Li , Z. Liang , H. Liao , K. Lin , W. Lin , Z. Lin , D. Lincoln , L. Linssen , A. Litomin , G. Liu , Y. Liu , A. Lobanov , V. Lohezic , T. Loiseau , C. Lu , R. Lu , S. Y. Lu , P. Lukens , M. Mackenzie , A. Magnan , F. Magniette , A. Mahjoub , D. Mahon , G. Majumder , V. Makarenko , A. Malakhov , L. Malgeri , S. Mallios , C. Mandloi , A. Mankel , M. Mannelli , J. Mans , C. Mantilla , G. Martinez , C. Massa , P. Masterson , M. Matthewman , V. Matveev , S. Mayekar , I. Mazlov , A. Mehta , A. Mestvirishvili , Y. Miao , G. Milella , I. R. Mirza , P. Mitra , S. Moccia , G. B. Mohanty , F. Monti , F. Moortgat , S. Murthy , J. Music , Y. Musienko , S. Nabili , J. W. Nelson , A. Nema , I. Neutelings , J. Niedziela , A. Nikitenko , D. Noonan , M. Noy , K. Nurdan , S. Obraztsov , C. Ochando , H. Ogul , J. Olsson , Y. Onel , S. Ozkorucuklu , E. Paganis , P. Palit , R. Pan , S. Pandey , F. Pantaleo , C. Papageorgakis , S. Paramesvaran , M. M. Paranjpe , S. Parolia , A. G. Parsons , P. Parygin , J. Pastika , M. Paulini , C. Paus , K. Peñaló Castillo , K. Pedro , V. Pekic , T. Peltola , B. Peng , A. Perego , D. Perini , A. Petrilli , H. Pham , S. K. Podem , V. Popov , L. Portales , O. Potok , P. B. Pradeep , R. Pramanik , H. Prosper , M. Prvan , S. R. Qasim , H. Qu , T. Quast , A. Quiroga Trivio , L. Rabour , N. Raicevic , M. A. Rao , K. Rapacz , W. Redjeb , M. Reinecke , M. Revering , A. Roberts , J. Rohlf , P. Rosado , A. Rose , S. Rothman , P. K. Rout , M. Rovere , A. Roy , P. Rubinov , P. Rumerio , R. Rusack , L. Rygaard , V. Ryjov , S. Sadivnycha , M. Ö. Sahin , U. Sakarya , R. Salerno , R. Saradhy , M. Saraf , K. Sarbandi , M. A. Sarkisla , I. Satyshev , N. Saud , J. Sauvan , G. Schindler , A. Schmidt , I. Schmidt , M. H. Schmitt , A. Sculac , T. Sculac , A. Sedelnikov , C. Seez , F. Sefkow , D. Selivanova , M. Selvaggi , V. Sergeychik , H. Sert , M. Shahid , P. Sharma , R. Sharma , S. Sharma , M. Shelake , A. Shenai , C. W. Shih , R. Shinde , D. Shmygol , R. Shukla , E. Sicking , P. Silva , C. Simsek , E. Simsek , B. K. Sirasva , Y. Sirois , S. Song , Y. Song , G. Soudais , S. Sriram , R. R. St Jacques , A. G. Stahl Leiton , A. Steen , J. Stein , J. Strait , N. Strobbe , X. Su , E. Sukhov , A. Suleiman , D. Sunar Cerci , P. Suryadevara , K. Swain , C. Syal , B. Tali , K. Tanay , W. Tang , A. Tanvir , J. Tao , A. Tarabini , T. Tatli , R. Taylor , Z. C. Taysi , G. Teafoe , C. Z. Tee , W. Terrill , D. Thienpont , P. E. Thomas , R. Thomas , M. Titov , C. Todd , E. Todd , M. Toms , A. Tosun , J. Troska , L. Tsai , Z. Tsamalaidze , D. Tsionou , G. Tsipolitis , M. Tsirigoti , R. Tu , S. N. Tural Polat , S. Undleeb , E. Usai , E. Uslan , V. Ustinov , A. Uzunian , E. Vernazza , O. Viahin , O. Viazlo , P. Vichoudis , A. Vijay , T. Virdee , E. Voirin , M. Vojinovic , T. Á. Vámi , A. Wade , D. Walter , C. Wang , F. Wang , J. Wang , K. Wang , X. Wang , X. Wang , Y. Wang , Z. Wang , E. Wanlin , M. Wayne , J. Wetzel , A. Whitbeck , R. Wickwire , D. Wilmot , J. Wilson , H. Wu , M. Xiao , J. Yang , B. Yazici , Y. Ye , B. Yerli , T. Yetkin , R. Yi , R. Yohay , T. Yu , C. Yuan , X. Yuan , O. Yuksel , I. YushmanoV , I. Yusuff , A. Zabi , D. Zareckis , P. Zehetner , A. Zghiche , C. Zhang , D. Zhang , H. Zhang , J. Zhang , J. Zhang , Z. Zhang , X. Zhao , J. Zhong , Y. Zhou , Ç. Zorbilmez

Based on a novel shower reconstruction algorithm, the study of two particle separation with tile hadron calorimeter (HCAL) is performed. The separability of two close-by particles is found to be strongly dependent on transverse and…

Instrumentation and Detectors · Physics 2007-05-23 V. Morgunov , A. Raspereza

The Tile Calorimeter is the hadron calorimeter covering the central region of the ATLAS experiment at the Large Hadron Collider. Approximately 10000 photomultipliers collect light from scintillating tiles acting as the active material…

High Energy Physics - Experiment · Physics 2018-12-07 ATLAS Collaboration

The High Energy Physics group of the University of Texas at Arlington Physics Department has been developing Gas Electron Multiplier (GEM) detectors for use as the sensitive gap detector in digital hadron calorimeters (DHCAL) for the future…

Instrumentation and Detectors · Physics 2011-10-20 J. Yu , E. Baldelomar , K. Park , S. Park , M. Sosebee , N. Tran , A. P. White

The Tile Calorimeter (TileCal) is one detector of the ATLAS experiment at the Large Hadron Collider (LHC). TileCal is a sampling calorimeter made of steel plates and plastic scintillators which are readout using approximately 10,000…

Instrumentation and Detectors · Physics 2019-09-04 F. Carrió , A. Valero
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