001698940 001__ 1698940 001698940 003__ SzGeCERN 001698940 005__ 20220810230042.0 001698940 0247_ $$2DOI$$a10.1088/1748-0221/9/07/P07022 001698940 0248_ $$aoai:cds.cern.ch:1698940$$popenaire$$pcerncds:CERN$$pcerncds:FULLTEXT$$pcerncds:CERN:FULLTEXT$$qec_fundedresources 001698940 037__ $$9arXiv$$aarXiv:1404.6454$$cphysics.ins-det 001698940 037__ $$aMPP-2014-147 001698940 037__ $$aCALICE-PUB-2014-001 001698940 035__ $$9arXiv$$aoai:arXiv.org:1404.6454 001698940 035__ $$9Inspire$$a1292477 001698940 041__ $$aeng 001698940 088__ $$aMPP-2014-147 001698940 100__ $$aAdloff, C.$$uAnnecy, LAPP 001698940 245__ $$aThe Time Structure of Hadronic Showers in Highly Granular Calorimeters with Tungsten and Steel Absorbers 001698940 269__ $$aGeneva$$bCERN$$c2014-04-25 001698940 260__ $$c2014 001698940 300__ $$a22 p 001698940 500__ $$aComments: 22 pages including author list, 9 figures, to be submitted to JINST 001698940 500__ $$9arXiv$$a24 pages including author list, 9 figures, published in JINST 001698940 520__ $$aThe intrinsic time structure of hadronic showers influences the timing capability and the required integration time of hadronic calorimeters in particle physics experiments, and depends on the active medium and on the absorber of the calorimeter. With the CALICE T3B experiment, a setup of 15 small plastic scintillator tiles read out with Silicon Photomultipliers, the time structure of showers is measured on a statistical basis with high spatial and temporal resolution in sampling calorimeters with tungsten and steel absorbers. The results are compared to GEANT4 (version 9.4 patch 03) simulations with different hadronic physics models. These comparisons demonstrate the importance of using high precision treatment of low-energy neutrons for tungsten absorbers, while an overall good agreement between data and simulations for all considered models is observed for steel. 001698940 520__ $$9arXiv$$aThe intrinsic time structure of hadronic showers influences the timing capability and the required integration time of hadronic calorimeters in particle physics experiments, and depends on the active medium and on the absorber of the calorimeter. With the CALICE T3B experiment, a setup of 15 small plastic scintillator tiles read out with Silicon Photomultipliers, the time structure of showers is measured on a statistical basis with high spatial and temporal resolution in sampling calorimeters with tungsten and steel absorbers. The results are compared to GEANT4 (version 9.4 patch 03) simulations with different hadronic physics models. These comparisons demonstrate the importance of using high precision treatment of low-energy neutrons for tungsten absorbers, while an overall good agreement between data and simulations for all considered models is observed for steel. 001698940 536__ $$aFP7$$c262025$$fAIDA$$ropenAccess 001698940 540__ $$3publication$$aCC-BY-3.0$$fCERN Library$$gDAI/618913 001698940 542__ $$3publication$$dCERN$$g2014 001698940 595__ $$aLANL EDS 001698940 595__ $$aCERN Invenio WebSubmit$$bGENEU$$c0.1 001698940 65017 $$2arXiv$$aDetectors and Experimental Techniques 001698940 65017 $$2SzGeCERN$$aDetectors and Experimental Techniques 001698940 65017 $$2AIDA$$a9: Advanced infrastructures for detector R&D$$bWP 001698940 65017 $$2AIDA$$a9.5:Highly Granular Calorimetry$$bTask 001698940 65027 $$2arXiv$$aParticle Physics - Experiment 001698940 693__ $$aILC$$eCALICE 001698940 693__ $$aCERN SPS$$bH8 001698940 690C_ $$aARTICLE 001698940 690C_ $$aCERN 001698940 690C_ $$aAIDA 001698940 690C_ $$aAIDAPUB 001698940 695__ $$9LANL EDS$$aphysics.ins-det 001698940 695__ $$9LANL EDS$$ahep-ex 001698940 700__ $$aBlaising, J.-J.$$uAnnecy, LAPP 001698940 700__ $$aChefdeville, M.$$uAnnecy, LAPP 001698940 700__ $$aDrancourt, C.$$uAnnecy, LAPP 001698940 700__ $$aGaglione, R.$$uAnnecy, LAPP 001698940 700__ $$aGeffroy, N.$$uAnnecy, LAPP 001698940 700__ $$aKaryotakis, Y.$$uAnnecy, LAPP 001698940 700__ $$aKoletsou, I.$$uAnnecy, LAPP 001698940 700__ $$aPrast, J.$$uAnnecy, LAPP 001698940 700__ $$aVouters, G.$$uAnnecy, LAPP 001698940 700__ $$aRepond, J.$$uArgonne 001698940 700__ $$aSchlereth, J.$$uArgonne 001698940 700__ $$aXia, L.$$uArgonne 001698940 700__ $$aBaldolemar, E.$$uTexas U., Arlington 001698940 700__ $$aLi, J.$$uTexas U., Arlington 001698940 700__ $$aPark, S.T.$$uTexas U., Arlington 001698940 700__ $$aSosebee, M.$$uTexas U., Arlington 001698940 700__ $$aWhite, A.P.$$uTexas U., Arlington 001698940 700__ $$aYu, J.$$uTexas U., Arlington 001698940 700__ $$aEigen, G.$$uBergen U. 001698940 700__ $$aThomson, M.A.$$uCambridge U. 001698940 700__ $$aWard, D.R.$$uCambridge U. 001698940 700__ $$aBenchekroun, D.$$uCasablanca U. 001698940 700__ $$aHoummada, A.$$uCasablanca U. 001698940 700__ $$aKhoulaki, Y.$$uCasablanca U. 001698940 700__ $$aApostolakis, J.$$uCERN 001698940 700__ $$aArfaoui, A.$$uCERN 001698940 700__ $$aBenoit, M.$$uCERN 001698940 700__ $$aDannheim, D.$$uCERN 001698940 700__ $$aElsener, K.$$uCERN 001698940 700__ $$aFolger, G.$$uCERN 001698940 700__ $$aGrefe, C.$$uCERN 001698940 700__ $$aIvantchenko, V.$$uCERN 001698940 700__ $$aKillenberg, M.$$uCERN 001698940 700__ $$aKlempt, W.$$uCERN 001698940 700__ $$avan der Kraaij, E.$$uCERN 001698940 700__ $$aLinssen, L.$$uCERN 001698940 700__ $$aLucaci-Timoce, A.-I.$$uCERN 001698940 700__ $$aMünnich, A.$$uCERN 001698940 700__ $$aPoss, S.$$uCERN 001698940 700__ $$aRibon, A.$$uCERN 001698940 700__ $$aRoloff, P.$$uDESY 001698940 700__ $$aSailer, A.$$uCERN 001698940 700__ $$aSchlatter, D.$$uCERN 001698940 700__ $$aSicking, E.$$uCERN 001698940 700__ $$aStrube, J.$$uCERN 001698940 700__ $$aUzhinskiy, V.$$uCERN 001698940 700__ $$aCarloganu, C.$$uClermont-Ferrand U. 001698940 700__ $$aGay, P.$$uClermont-Ferrand U. 001698940 700__ $$aManen, S.$$uClermont-Ferrand U. 001698940 700__ $$aRoyer, L.$$uClermont-Ferrand U. 001698940 700__ $$aCornett, U.$$uDESY 001698940 700__ $$aDavid, D.$$uDESY 001698940 700__ $$aEbrahimi, A.$$uDESY 001698940 700__ $$aFalley, G.$$uDESY 001698940 700__ $$aFeege, N.$$uDESY 001698940 700__ $$aGadow, K.$$uDESY 001698940 700__ $$aGöttlicher, P.$$uDESY 001698940 700__ $$aGünter, C.$$uDESY 001698940 700__ $$aHartbrich, O.$$uDESY 001698940 700__ $$aHermberg, B.$$uDESY 001698940 700__ $$aKarstensen, S.$$uDESY 001698940 700__ $$aKrivan, F.$$uDESY 001698940 700__ $$aKrüger, K.$$uDESY 001698940 700__ $$aLu, S.$$uDESY 001698940 700__ $$aLutz, B.$$uDESY 001698940 700__ $$aMorozov, S.$$uDESY 001698940 700__ $$aMorgunov, V.$$uDESY 001698940 700__ $$aNeubüser, C.$$uDESY 001698940 700__ $$aReinecke, M.$$uDESY 001698940 700__ $$aSefkow, F.$$uDESY 001698940 700__ $$aSmirnov, P.$$uDESY 001698940 700__ $$aTerwort, M.$$uDESY 001698940 700__ $$aFagot, A.$$uGent U. 001698940 700__ $$aTytgat, M.$$uGent U. 001698940 700__ $$aZaganidis, N.$$uGent U. 001698940 700__ $$aHostachy, J.-Y.$$uLPSC, Grenoble 001698940 700__ $$aMorin, L.$$uLPSC, Grenoble 001698940 700__ $$aGarutti, E.$$uHamburg U. 001698940 700__ $$aLaurien, S.$$uHamburg U. 001698940 700__ $$aMarchesini, I.$$uDESY$$uHamburg U. 001698940 700__ $$aMatysek, M.$$uHamburg U. 001698940 700__ $$aRamilli, M.$$uHamburg U. 001698940 700__ $$aBriggl, K.$$uHeidelberg U. 001698940 700__ $$aEckert, P.$$uHeidelberg U. 001698940 700__ $$aHarion, T.$$uHeidelberg U. 001698940 700__ $$aSchultz-Coulon, H.-Ch.$$uHeidelberg U. 001698940 700__ $$aShen, W.$$uHeidelberg U. 001698940 700__ $$aStamen, R.$$uHeidelberg U. 001698940 700__ $$aChang, S.$$uKyungpook Natl. 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Eng. Inst.$$uMoscow, MIPT$$uMoscow, ITEP 001698940 700__ $$aEpifantsev, A.$$uMoscow, ITEP 001698940 700__ $$aMarkin, O.$$uMoscow, ITEP 001698940 700__ $$aMizuk, R.$$uMoscow Phys. Eng. Inst.$$uMoscow, MIPT$$uMoscow, ITEP 001698940 700__ $$aNovikov, E.$$uMoscow, ITEP 001698940 700__ $$aRusinov, V.$$uMoscow, ITEP 001698940 700__ $$aTarkovsky, E.$$uMoscow, ITEP 001698940 700__ $$aKozlov, V.$$uLebedev Inst. 001698940 700__ $$aSoloviev, Y.$$uLebedev Inst. 001698940 700__ $$aBesson, D.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aBuzhan, P.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aIlyin, A.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aKantserov, V.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aKaplin, V.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aPopova, E.$$uMoscow Phys. Eng. Inst. 001698940 700__ $$aTikhomirov, V.$$uMoscow Phys. Eng. 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Phys. 001698940 700__ $$aBelhorma, B.$$uCNESTEN, Rabat 001698940 700__ $$aGhazlane, H.$$uCNESTEN, Rabat 001698940 700__ $$aKotera, K.$$uShinshu U. 001698940 700__ $$aOno, H.$$uShinshu U. 001698940 700__ $$aTakeshita, T.$$uShinshu U. 001698940 700__ $$aUozumi, S.$$uShinshu U. 001698940 700__ $$aChai, J.S.$$uSungkyunkwan U. 001698940 700__ $$aSong, H.S.$$uSungkyunkwan U. 001698940 700__ $$aLee, S.H.$$uSungkyunkwan U. 001698940 700__ $$aGötze, M.$$uWuppertal U. 001698940 700__ $$aSauer, J.$$uWuppertal U. 001698940 700__ $$aWeber, S.$$uWuppertal U. 001698940 700__ $$aZeitnitz, C.$$uWuppertal U. 001698940 710__ $$gCALICE Collaboration 001698940 773__ $$cP07022$$pJINST$$v9$$y2014 001698940 859__ [email protected] 001698940 8564_ $$uhttp://arxiv.org/pdf/1404.6454.pdf$$yPreprint 001698940 8564_ $$81044761$$s2249228$$uhttps://cds.cern.ch/record/1698940/files/1748-0221_9_07_P07022.pdf$$yIOP Open Access article 001698940 8564_ $$81089397$$s3155118$$uhttps://cds.cern.ch/record/1698940/files/AIDA-PUB-2015-008.pdf$$yAIDA fulltext 001698940 8564_ $$81266155$$s1973347$$uhttps://cds.cern.ch/record/1698940/files/arXiv:1404.6454.pdf 001698940 916__ $$sn$$w201418$$ya2014 001698940 960__ $$a13 001698940 963__ $$aPUBLIC 001698940 980__ $$aARTICLE$$bAIDA 001698940 981__ $$a1997620