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CMS calorimeter energy calibration was done in the full CMS simulated geometry for the pseudorapidity region eta = 0. The samples of single pion events were generated with a set of incident energies from 10 GeV to 3 TeV. The analysis of the…

高能物理 - 实验 · 物理学 2016-08-31 J. Damgov , V. Genchev , S. Cht. Mavrodiev

A new method for calibrating the hadron response of a segmented calorimeter is developed. It is based on a principal component analysis of the calorimeter layer energy deposits, exploiting longitudinal shower development information to…

仪器与探测器 · 物理学 2019-08-14 Karl-Johan Grahn

A new method for calibrating the hadron response of a segmented calorimeter is developed and successfully applied to beam test data. It is based on a principal component analysis of energy deposits in the calorimeter layers, exploiting…

仪器与探测器 · 物理学 2016-12-13 E. Abat , J. M. Abdallah , T. N. Addy , P. Adragna , M. Aharrouche , A. Ahmad , T. P. A. Akesson , M. Aleksa , C. Alexa , K. Anderson , A. Andreazza , F. Anghinolfi , A. Antonaki , G. Arabidze , E. Arik , T. Atkinson , J. Baines , O. K. Baker , D. Banfi , S. Baron , A. J. Barr , R. Beccherle , H. P. Beck , B. Belhorma , P. J. Bell , D. Benchekroun , D. P. Benjamin , K. Benslama , E. Bergeaas Kuutmann , J. Bernabeu , H. Bertelsen , S. Binet , C. Biscarat , V. Boldea , V. G. Bondarenko , M. Boonekamp , M. Bosman , C. Bourdarios , Z. Broklova , D. Burckhart Chromek , V. Bychkov , J. Callahan , D. Calvet , M. Canneri , M. Capeáns Garrido , M. Caprini , L. Cardiel Sas , T. Carli , L. Carminati , J. Carvalho , M. Cascella , M. V. Castillo , A. Catinaccio , D. Cauz , D. Cavalli , M. Cavalli Sforza , V. Cavasinni , S. A. Cetin , H. Chen , R. Cherkaoui , L. Chevalier , F. Chevallier , S. Chouridou , M. Ciobotaru , M. Citterio , A. Clark , B. Cleland , M. Cobal , E. Cogneras , P. Conde Muino , M. Consonni , S. Constantinescu , T. Cornelissen , S. Correard , A. Corso Radu , G. Costa , M. J. Costa , D. Costanzo , S. Cuneo , P. Cwetanski , D. Da Silva , M. Dam , M. Dameri , H. O. Danielsson , D. Dannheim , G. Darbo , T. Davidek , K. De , P. O. Defay , B. Dekhissi , J. Del Peso , T. Del Prete , M. Delmastro , F. Derue , L. Di Ciaccio , B. Di Girolamo , S. Dita , F. Dittus , F. Djama , T. Djobava , D. Dobos , M. Dobson , B. A. Dolgoshein , A. Dotti , G. Drake , Z. Drasal , N. Dressnandt , C. Driouchi , J. Drohan , W. L. Ebenstein , P. Eerola , I. Efthymiopoulos , K. Egorov , T. F. Eifert , K. Einsweiler , M. El Kacimi , M. Elsing , D. Emelyanov , C. Escobar , A. I. Etienvre , A. Fabich , K. Facius , A. I. Fakhr-Edine , M. Fanti , A. Farbin , P. Farthouat , D. Fassouliotis , L. Fayard , R. Febbraro , O. L. Fedin , A. Fenyuk , D. Fergusson , P. Ferrari , R. Ferrari , B. C. Ferreira , A. Ferrer , D. Ferrere , G. Filippini , T. Flick , D. Fournier , P. Francavilla , D. Francis , R. Froeschl , D. Froidevaux , E. Fullana , S. Gadomski , G. Gagliardi , P. Gagnon , M. Gallas , B. J. Gallop , S. Gameiro , K. K. Gan , R. Garcia , C. Garcia , I. L. Gavrilenko , C. Gemme , P. Gerlach , N. Ghodbane , V. Giakoumopoulou , V. Giangiobbe , N. Giokaris , G. Glonti , T. Goettfert , T. Golling , N. Gollub , A. Gomes , M. D. Gomez , S. Gonzalez-Sevilla , M. J. Goodrick , G. Gorfine , B. Gorini , D. Goujdami , K-J. Grahn , P. Grenier , N. Grigalashvili , Y. Grishkevich , J. Grosse-Knetter , M. Gruwe , C. Guicheney , A. Gupta , C. Haeberli , R. Haertel , Z. Hajduk , H. Hakobyan , M. Hance , J. D. Hansen , P. H. Hansen , K. Hara , A. Harvey , R. J. Hawkings , F. E. W. Heinemann , A. Henriques Correia , T. Henss , L. Hervas , E. Higon , J. C. Hill , J. Hoffman , J. Y. Hostachy , I. Hruska , F. Hubaut , F. Huegging , W. Hulsbergen , M. Hurwitz , L. Iconomidou-Fayard , E. Jansen , I. Jen-La Plante , P. D. C. Johansson , K. Jon-And , M. Joos , S. Jorgensen , J. Joseph , A. Kaczmarska , M. Kado , A. Karyukhin , M. Kataoka , F. Kayumov , A. Kazarov , P. T. Keener , G. D. Kekelidze , N. Kerschen , S. Kersten , A. Khomich , G. Khoriauli , E. Khramov , A. Khristachev , J. Khubua , T. H. Kittelmann , R. Klingenberg , E. B. Klinkby , P. Kodys , T. Koffas , S. Kolos , S. P. Konovalov , N. Konstantinidis , S. Kopikov , I. Korolkov , V. Kostyukhin , S. Kovalenko , T. Z. Kowalski , K. Krüger , V. Kramarenko , L. G. Kudin , Y. Kulchitsky , C. Lacasta , R. Lafaye , B. Laforge , W. Lampl , F. Lanni , S. Laplace , T. Lari , A-C. Le Bihan , M. Lechowski , F. Ledroit-Guillon , G. Lehmann , R. Leitner , D. Lelas , C. G. Lester , Z. Liang , P. Lichard , W. Liebig , A. Lipniacka , M. Lokajicek , L. Louchard , K. F. Lourerio , A. Lucotte , F. Luehring , B. Lund-Jensen , B. Lundberg , H. Ma , R. Mackeprang , A. Maio , V. P. Maleev , F. Malek , L. Mandelli , J. Maneira , M. Mangin-Brinet , A. Manousakis , L. Mapelli , C. Marques , S. Marti i Garcia , F. Martin , M. Mathes , M. Mazzanti , K. W. McFarlane , R. McPherson , G. Mchedlidze , S. Mehlhase , C. Meirosu , Z. Meng , C. Meroni , V. Mialkovski , B. Mikulec , D. Milstead , I. Minashvili , B. Mindur , V. A. Mitsou , S. Moed , E. Monnier , G. Moorhead , P. Morettini , S. V. Morozov , M. Mosidze , S. V. Mouraviev , E. W. J. Moyse , A. Munar , A. Myagkov , A. V. Nadtochi , K. Nakamura , P. Nechaeva , A. Negri , S. Nemecek , M. Nessi , S. Y. Nesterov , F. M. Newcomer , I. Nikitine , K. Nikolaev , I. Nikolic-Audit , H. Ogren , S. H. Oh , S. B. Oleshko , J. Olszowska , A. Onofre , C. Padilla Aranda , S. Paganis , D. Pallin , D. Pantea , V. Paolone , F. Parodi , J. Parsons , S. Parzhitskiy , E. Pasqualucci , S. M. Passmored , J. Pater , S. Patrichev , M. Peez , V. Perez Reale , L. Perini , V. D. Peshekhonov , J. Petersen , T. C. Petersen , R. Petti , P. W. Phillips , J. Pina , B. Pinto , F. Podlyski , L. Poggioli , A. Poppleton , J. Poveda , P. Pralavorio , L. Pribyl , M. J. Price , D. Prieur , C. Puigdengoles , P. Puzo , O. Røhne , F. Ragusa , S. Rajagopalan , K. Reeves , I. Reisinger , C. Rembser , P. A. Bruckman. de. Renstrom , P. Reznicek , M. Ridel , P. Risso , I. Riu , D. Robinson , C. Roda , S. Roe , O. Rohne , A. Romaniouk , D. Rousseau , A. Rozanov , A. Ruiz , N. Rusakovich , D. Rust , Y. F. Ryabov , V. Ryjov , O. Salto , B. Salvachua , A. Salzburger , H. Sandaker , C. Santamarina Rios , L. Santi , C. Santoni , J. G. Saraiva , F. Sarri , G. Sauvage , L. P. Says , M. Schaefer , V. A. Schegelsky , C. Schiavi , J. Schieck , G. Schlager , J. Schlereth , C. Schmitt , J. Schultes , P. Schwemling , J. Schwindling , J. M. Seixas , D. M. Seliverstov , L. Serin , A. Sfyrla , N. Shalanda , C. Shaw , T. Shin , A. Shmeleva , J. Silva , S. Simion , M. Simonyan , J. E. Sloper , S. Yu. Smirnov , L. Smirnova , C. Solans , A. Solodkov , O. Solovianov , I. Soloviev , V. V. Sosnovtsev , F. Spanó , P. Speckmayer , S. Stancu , R. Stanek , E. Starchenko , A. Straessner , S. I. Suchkov , M. Suk , R. Szczygiel , F. Tarrade , F. Tartarelli , P. Tas , Y. Tayalati , F. Tegenfeldt , R. Teuscher , M. Thioye , V. O. Tikhomirov , C. J. W. P. Timmermans , S. Tisserant , B. Toczek , L. Tremblet , C. Troncon , P. Tsiareshka , M. Tyndel , M. Karagoez. Unel , G. Unal , G. Unel , G. Usai , R. Van Berg , A. Valero , S. Valkar , J. A. Valls , W. Vandelli , F. Vannucci , A. Vartapetian , V. I. Vassilakopoulos , L. Vasilyeva , F. Vazeille , F. Vernocchi , Y. Vetter-Cole , I. Vichou , V. Vinogradov , J. Virzi , I. Vivarelli , J. B. de. Vivie , M. Volpi , T. Vu Anh , C. Wang , M. Warren , J. Weber , M. Weber , A. R. Weidberg , J. Weingarten , P. S. Wells , P. Werner , S. Wheeler , M. Wiessmann , H. Wilkens , H. H. Williams , I. Wingerter-Seez , Y. Yasu , A. Zaitsev , A. Zenin , T. Zenis , Z. Zenonos , H. Zhang , A. Zhelezko , N. Zhou

Methods are presented for calibrating the hadron calorimeter system of the CMS detector at the LHC. The hadron calorimeters of the CMS experiment are sampling calorimeters of brass and scintillator, and are in the form of one central…

仪器与探测器 · 物理学 2020-05-07 CMS Collaboration

We present a study which shows encouraging stability of the response linearity for a simulated high granularity calorimeter module reconstructed by a CNN model to miscalibration, bias, and noise effects. Our results also show an intuitive,…

仪器与探测器 · 物理学 2022-08-10 N. Akchurin , C. Cowden , J. Damgov , A. Hussain , S. Kunori

The energy response of the ATLAS calorimeter is measured for single charged pions with transverse momentum in the range $10<p_\textrm{T}<300$ GeV. The measurement is performed using 139 $\textrm{fb}^{-1}$ of LHC proton-proton collision data…

高能物理 - 实验 · 物理学 2022-09-07 ATLAS Collaboration

We report on the response of a prototype CMS hadron calorimeter module to charged particle beams of pions, muons, and electrons with momenta up to 375 GeV/c. The data were taken at the H2 and H4 beamlines at CERN in 1995 and 1996. The…

The e/$\pi$ ratio for the Barrel Combined Calorimeter Prototype, composed from electromagnetic LAr calorimeter and hadronic Tile calorimter was investigated. Response of Combined Calorimeter on pions and electrons in the energy region 20 -…

高能物理 - 实验 · 物理学 2007-05-23 Y. A. Kulchitsky , M. V. Kuzmin

The energy calibration of calorimeters at collider experiments, such as the ones at the CERN Large Hadron Collider, is crucial for achieving the experiments physics objectives. Standard calibration approaches have limitations that become…

The energy calibration and resolution of the electromagnetic calorimeter (ECAL) of the CMS detector have been determined using proton-proton collision data from LHC operation in 2010 and 2011 at a centre-of-mass energy of sqrt(s)=7 TeV with…

高能物理 - 实验 · 物理学 2013-10-07 CMS Collaboration

The method to calculate the non-linearity correction of the electromagnetic calorimeter response, based on minimisation of the deviation of the measured neutral meson mass on the energies of it decay photons, is described in this paper.…

We performed a Geant4 simulation study on showers generated by electrons and hadrons in a large homogeneous calorimeter. We found that the energy deposit can be expressed as a linear function of the track length. The line does not pass…

仪器与探测器 · 物理学 2020-10-16 R. Terada , Y. Hasegawa , T. Takeshita

The purpose of the MIPP experiment is to study the inclusive production of photons, pions, kaons and nucleons in pi, K and p interactions on various targets using beams from the Main Injector at Fermilab. The function of the calorimeters is…

The intrinsic performance of the ATLAS barrel and extended barrel calorimeters for the measurement of charged pions is presented. Pion energy scans (E = 20, 50, 200, 400 and 1000 GeV) at two pseudo-rapidity points ($\eta$ = 0.3 and 1.3) and…

高能物理 - 实验 · 物理学 2009-09-25 M. Bosman , Y. Kulchitsky , M. Nessi

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…

仪器与探测器 · 物理学 2017-08-02 Stathes Paganis , Andreas Psallidas , Arnaud Steen

The energy resolution of a highly granular 1 m3 analogue scintillator-steel hadronic calorimeter is studied using charged pions with energies from 10 GeV to 80 GeV at the CERN SPS. The energy resolution for single hadrons is determined to…

仪器与探测器 · 物理学 2012-09-28 CALICE Collaboration , C. Adloff , J. Blaha , J. -J. Blaising , C. Drancourt , A. Espargilière , R. Gaglione , N. Geffroy , Y. Karyotakis , J. Prast , G. Vouters , K. Francis , J. Repond , J. Smith , L. Xia , E. Baldolemar , J. Li , S. T. Park , M. Sosebee , A. P. White , J. Yu , T. Buanes , G. Eigen , Y. Mikami , N. K. Watson , T. Goto , G. Mavromanolakis , M. A. Thomson , D. R. Ward , W. Yan , D. Benchekroun , A. Hoummada , Y. Khoulaki , M. Benyamna , C. Cârloganu , F. Fehr , P. Gay , S. Manen , L. Royer , G. C. Blazey , A. Dyshkant , J. G. R. Lima , V. Zutshi , J. -Y. Hostachy , L. Morin , U. Cornett , D. David , G. Falley , K. Gadow , P. Göttlicher , C. Günter , B. Hermberg , S. Karstensen , F. Krivan , A. -I. Lucaci-Timoce , S. Lu , B. Lutz , S. Morozov , V. Morgunov , M. Reinecke , F. Sefkow , P. Smirnov , M. Terwort , A. Vargas-Trevino , N. Feege , E. Garutti , I. Marchesini , M. Ramilli , P. Eckert , T. Harion , A. Kaplan , H. -Ch. Schultz-Coulon , W. Shen , R. Stamen , A. Tadday , B. Bilki , E. Norbeck , Y. Onel , G. W. Wilson , K. Kawagoe , P. D. Dauncey , A. -M. Magnan , M. Wing , F. Salvatore , E. Calvo Alamillo , M. -C. Fouz , J. Puerta-Pelayo , V. Balagura , B. Bobchenko , M. Chadeeva , M. Danilov , A. Epifantsev , O. Markin , R. Mizuk , E. Novikov , V. Rusinov , E. Tarkovsky , N. Kirikova , V. Kozlov , P. Smirnov , Y. Soloviev , P. Buzhan , B. Dolgoshein , A. Ilyin , V. Kantserov , V. Kaplin , A. Karakash , E. Popova , S. Smirnov , C. Kiesling , S. Pfau , K. Seidel , F. Simon , C. Soldner , M. Szalay , M. Tesar , L. Weuste , J. Bonis , B. Bouquet , S. Callier , P. Cornebise , Ph. Doublet , F. Dulucq , M. Faucci Giannelli , J. Fleury , H. Li , G. Martin-Chassard , F. Richard , Ch. de la Taille , R. Pöschl , L. Raux , N. Seguin-Moreau , F. Wicek , M. Anduze , V. Boudry , J-C. Brient , D. Jeans , P. Mora de Freitas , G. Musat , M. Reinhard , M. Ruan , H. Videau , B. Bulanek , J. Zacek , J. Cvach , P. Gallus , M. Havranek , M. Janata , J. Kvasnicka , D. Lednicky , M. Marcisovsky , I. Polak , J. Popule , L. Tomasek , M. Tomasek , P. Ruzicka , P. Sicho , J. Smolik , V. Vrba , J. Zalesak , B. Belhorma , H. Ghazlane , T. Takeshita , S. Uozumi , J. Sauer , S. Weber , C. Zeitnitz

We present results of the performance of the second prototype of the CASTOR quartz-tungsten sampling calorimeter, to be installed in the very forward region of the CMS experiment at the LHC. The energy linearity and resolution, as well as…

The fine-sampling electromagnetic calorimeter prototype has been experimentally tested using the 1-19 GeV/c tagged beams of negatively charged particles at the U70 accelerator at IHEP, Protvino. The energy resolution measured by electrons…

Measurements of the response function of the PIENU NaI(T$\ell$) and CsI crystal calorimeter using a monochromatic 70 MeV/c positron beam at various incidence angles are described. The experimental setup and relevant physical processes…

This paper describes the experience with the calibration, reconstruction and evaluation of the timing capabilities of the CMS HGCAL prototype in the beam tests in 2018. The calibration procedure includes multiple steps and corrections…

仪器与探测器 · 物理学 2024-04-15 CMS HGCAL collaboration
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