Results from a combined test of an electromagnetic liquid argon calorimeter with a hadronic scintillating-tile calorimeter

The first combined test of an electromagnetic liquid argon accordion calorimeter and a hadronic scintillating-tile calorimeter was carried out at the CERN SPS. These devices are prototypes of the barrel calorimeter of the future ATLAS experiment at the LHC. The energy resolution of pions in the ener...

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Veröffentlicht in:Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Accelerators, spectrometers, detectors and associated equipment, 1997-03, Vol.387 (3), p.333-351
Hauptverfasser: Albiol, F., Alifanov, A., Ambrosini, G., Amorim, A., Astvatsaturov, A., Augé, E., Autiero, D., Azuelos, G., Bee, C., Berset, J.C., Blanchot, G., Bogush, A., Boldea, V., Borisov, O., Bouhemaid, N., Caloba, L., Cavalli-Sforza, M., Chekhtman, A., Chevalley, J.L., Chirikov-Zorin, I., Chlachidze, G., Chollet, J.C., Cogswell, F., Cologna, S., Cozzi, L., Dawson, J., Del Prete, T., Depommier, P., de Saintignon, P., Di Girolamo, B., Dolejsi, J., Downing, R., Dugne, J.-J., Efthymiopoulos, I., Fassnacht, P., Ferrari, A., Ferreira, P., Ferrer, A., Flaminio, V., Fouchez, D., Gallas, E., Gildemeister, O., Gingrich, D.M., Golubev, V., Gonzalez, J., Gordon, H.A., Hakopian, H., Hellman, S., Juste, A., Kakurin, S., Karapetian, G., Khokhlov, Yu, Kulagin, M., Kulchitsky, Y., Laborie, G., Lami, S., Lapin, V., Lebedev, A., Leflour, T., León-Florián, E., Le Van Suu, A., Li, J., Malyukov, S., Marroquin, F., Mazzanti, M., Mazzoni, E., Merritt, F., Miralles, L., Mnatsakanian, E., Mornacchi, G., Muanza, G.S., Nessi, M., Noppe, J.M., Orteu, S., Pantea, D., Parrour, G., Perini, L., Pinfold, J.L., Proudfoot, J., Radeka, V., Reinmuth, G., Riu, I., Ronceux, B., Schaffer, A., Scheel, C., Schwindling, J., Seixas, J.M., Seman, M., Shchelchkov, A., Simion, S., Sonderegger, P., Soustruznik, K., Tang, F., Tokar, S., Turcotte, M., Vorozhtsov, S., Wingerter-Seez, I., Zdrazil, M., Zitoun, R., Zolnierowski, Y.P.
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container_issue 3
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container_title Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment
container_volume 387
creator Albiol, F.
Alifanov, A.
Ambrosini, G.
Amorim, A.
Astvatsaturov, A.
Augé, E.
Autiero, D.
Azuelos, G.
Bee, C.
Berset, J.C.
Blanchot, G.
Bogush, A.
Boldea, V.
Borisov, O.
Bouhemaid, N.
Caloba, L.
Cavalli-Sforza, M.
Chekhtman, A.
Chevalley, J.L.
Chirikov-Zorin, I.
Chlachidze, G.
Chollet, J.C.
Cogswell, F.
Cologna, S.
Cozzi, L.
Dawson, J.
Del Prete, T.
Depommier, P.
de Saintignon, P.
Di Girolamo, B.
Dolejsi, J.
Downing, R.
Dugne, J.-J.
Efthymiopoulos, I.
Fassnacht, P.
Ferrari, A.
Ferreira, P.
Ferrer, A.
Flaminio, V.
Fouchez, D.
Gallas, E.
Gildemeister, O.
Gingrich, D.M.
Golubev, V.
Gonzalez, J.
Gordon, H.A.
Hakopian, H.
Hellman, S.
Juste, A.
Kakurin, S.
Karapetian, G.
Khokhlov, Yu
Kulagin, M.
Kulchitsky, Y.
Laborie, G.
Lami, S.
Lapin, V.
Lebedev, A.
Leflour, T.
León-Florián, E.
Le Van Suu, A.
Li, J.
Malyukov, S.
Marroquin, F.
Mazzanti, M.
Mazzoni, E.
Merritt, F.
Miralles, L.
Mnatsakanian, E.
Mornacchi, G.
Muanza, G.S.
Nessi, M.
Noppe, J.M.
Orteu, S.
Pantea, D.
Parrour, G.
Perini, L.
Pinfold, J.L.
Proudfoot, J.
Radeka, V.
Reinmuth, G.
Riu, I.
Ronceux, B.
Schaffer, A.
Scheel, C.
Schwindling, J.
Seixas, J.M.
Seman, M.
Shchelchkov, A.
Simion, S.
Sonderegger, P.
Soustruznik, K.
Tang, F.
Tokar, S.
Turcotte, M.
Vorozhtsov, S.
Wingerter-Seez, I.
Zdrazil, M.
Zitoun, R.
Zolnierowski, Y.P.
description The first combined test of an electromagnetic liquid argon accordion calorimeter and a hadronic scintillating-tile calorimeter was carried out at the CERN SPS. These devices are prototypes of the barrel calorimeter of the future ATLAS experiment at the LHC. The energy resolution of pions in the energy range from 20 to 300 GeV at an incident angle θ of about 11° is well-described by the expression σ E = (( 46.5 ± 6.0% √E+(1.2±0.3)% ) ⊕ (3.2±0.4) GeV E . Shower profiles, shower leakage, and the angular resolution of hadronic showers were also studied.
doi_str_mv 10.1016/S0168-9002(97)00075-2
format Article
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M.</creatorcontrib><creatorcontrib>Zitoun, R.</creatorcontrib><creatorcontrib>Zolnierowski, Y.P.</creatorcontrib><creatorcontrib>ATLAS Collaboration (Calorimetry and Data Acquisition)</creatorcontrib><title>Results from a combined test of an electromagnetic liquid argon calorimeter with a hadronic scintillating-tile calorimeter</title><title>Nuclear instruments &amp; methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment</title><description>The first combined test of an electromagnetic liquid argon accordion calorimeter and a hadronic scintillating-tile calorimeter was carried out at the CERN SPS. These devices are prototypes of the barrel calorimeter of the future ATLAS experiment at the LHC. The energy resolution of pions in the energy range from 20 to 300 GeV at an incident angle θ of about 11° is well-described by the expression σ E = (( 46.5 ± 6.0% √E+(1.2±0.3)% ) ⊕ (3.2±0.4) GeV E . Shower profiles, shower leakage, and the angular resolution of hadronic showers were also studied.</description><subject>Instrumentation and Detectors</subject><subject>Physics</subject><issn>0168-9002</issn><issn>1872-9576</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1997</creationdate><recordtype>article</recordtype><recordid>eNqFkF1LBCEUhiUK2j5-QuBlEVNHZ2bduYqIaoOFoI9rOeOc2TVmtdSK-vW5bUR33ajoc155H8YOBJwIEOPT-7xMigZAHjbqCABUXcgNNhITJYumVuNNNvpFttlOjE8ZgkZNRuzzjuLrkCLvg19y5MYvW-uo44li4r7n6DgNZFJ-xrmjZA0f7Mur7TiGuXfc4OCDXVKiwN9tWuSMBXbBuwxGY12yw4DJunmRT_QX32NbPQ6R9n_2XfZ4dflwMS1mt9c3F-ezwlSyTkUJytTUtti1YEoiNDhWNUJVYb4uG6gnBmqJQCB7BbIbtyQqUWKu36uqK3fZ8Tp3gYN-zp9j-NAerZ6ez7R18rnUKx1CSvUmMl2vaRN8jIH63xEBeqVbf-vWK5e6Ufpbt5Z57mw9R7nKm6Wgc3tyhjobsj7deftPwhewrYlo</recordid><startdate>19970311</startdate><enddate>19970311</enddate><creator>Albiol, F.</creator><creator>Alifanov, A.</creator><creator>Ambrosini, G.</creator><creator>Amorim, 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R.</creator><creator>Zolnierowski, Y.P.</creator><general>Elsevier B.V</general><general>Elsevier</general><scope>AAYXX</scope><scope>CITATION</scope><scope>1XC</scope><scope>VOOES</scope><orcidid>https://orcid.org/0000-0002-6301-5854</orcidid><orcidid>https://orcid.org/0000-0002-7496-3796</orcidid><orcidid>https://orcid.org/0000-0002-7328-7829</orcidid><orcidid>https://orcid.org/0000-0001-9386-8148</orcidid><orcidid>https://orcid.org/0000-0002-3461-3249</orcidid><orcidid>https://orcid.org/0000-0001-7369-6975</orcidid></search><sort><creationdate>19970311</creationdate><title>Results from a combined test of an electromagnetic liquid argon calorimeter with a hadronic scintillating-tile calorimeter</title><author>Albiol, F. ; Alifanov, A. ; Ambrosini, G. ; Amorim, A. ; Astvatsaturov, A. ; Augé, E. ; Autiero, D. ; Azuelos, G. ; Bee, C. ; Berset, J.C. ; Blanchot, G. ; Bogush, A. ; Boldea, V. ; Borisov, O. ; Bouhemaid, N. ; Caloba, L. ; Cavalli-Sforza, M. ; Chekhtman, A. ; Chevalley, J.L. ; 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Seixas, J.M. ; Seman, M. ; Shchelchkov, A. ; Simion, S. ; Sonderegger, P. ; Soustruznik, K. ; Tang, F. ; Tokar, S. ; Turcotte, M. ; Vorozhtsov, S. ; Wingerter-Seez, I. ; Zdrazil, M. ; Zitoun, R. ; Zolnierowski, Y.P.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c425t-307c5ebbadb0c3eeaca675a044a5eb39058c052a0e02f702d6be1413a187f74d3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>1997</creationdate><topic>Instrumentation and Detectors</topic><topic>Physics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Albiol, F.</creatorcontrib><creatorcontrib>Alifanov, A.</creatorcontrib><creatorcontrib>Ambrosini, G.</creatorcontrib><creatorcontrib>Amorim, A.</creatorcontrib><creatorcontrib>Astvatsaturov, A.</creatorcontrib><creatorcontrib>Augé, E.</creatorcontrib><creatorcontrib>Autiero, D.</creatorcontrib><creatorcontrib>Azuelos, 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Section A, Accelerators, spectrometers, detectors and associated equipment</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Albiol, F.</au><au>Alifanov, A.</au><au>Ambrosini, G.</au><au>Amorim, A.</au><au>Astvatsaturov, A.</au><au>Augé, E.</au><au>Autiero, D.</au><au>Azuelos, G.</au><au>Bee, C.</au><au>Berset, J.C.</au><au>Blanchot, G.</au><au>Bogush, A.</au><au>Boldea, V.</au><au>Borisov, O.</au><au>Bouhemaid, N.</au><au>Caloba, L.</au><au>Cavalli-Sforza, M.</au><au>Chekhtman, A.</au><au>Chevalley, J.L.</au><au>Chirikov-Zorin, I.</au><au>Chlachidze, G.</au><au>Chollet, J.C.</au><au>Cogswell, F.</au><au>Cologna, S.</au><au>Cozzi, L.</au><au>Dawson, J.</au><au>Del Prete, T.</au><au>Depommier, P.</au><au>de Saintignon, P.</au><au>Di Girolamo, B.</au><au>Dolejsi, J.</au><au>Downing, R.</au><au>Dugne, J.-J.</au><au>Efthymiopoulos, I.</au><au>Fassnacht, P.</au><au>Ferrari, A.</au><au>Ferreira, P.</au><au>Ferrer, A.</au><au>Flaminio, V.</au><au>Fouchez, D.</au><au>Gallas, E.</au><au>Gildemeister, O.</au><au>Gingrich, D.M.</au><au>Golubev, V.</au><au>Gonzalez, J.</au><au>Gordon, H.A.</au><au>Hakopian, H.</au><au>Hellman, S.</au><au>Juste, A.</au><au>Kakurin, S.</au><au>Karapetian, G.</au><au>Khokhlov, Yu</au><au>Kulagin, M.</au><au>Kulchitsky, Y.</au><au>Laborie, G.</au><au>Lami, S.</au><au>Lapin, V.</au><au>Lebedev, A.</au><au>Leflour, T.</au><au>León-Florián, E.</au><au>Le Van Suu, A.</au><au>Li, J.</au><au>Malyukov, S.</au><au>Marroquin, F.</au><au>Mazzanti, M.</au><au>Mazzoni, E.</au><au>Merritt, F.</au><au>Miralles, L.</au><au>Mnatsakanian, E.</au><au>Mornacchi, G.</au><au>Muanza, G.S.</au><au>Nessi, M.</au><au>Noppe, J.M.</au><au>Orteu, S.</au><au>Pantea, D.</au><au>Parrour, G.</au><au>Perini, L.</au><au>Pinfold, J.L.</au><au>Proudfoot, J.</au><au>Radeka, V.</au><au>Reinmuth, G.</au><au>Riu, I.</au><au>Ronceux, B.</au><au>Schaffer, A.</au><au>Scheel, C.</au><au>Schwindling, J.</au><au>Seixas, J.M.</au><au>Seman, M.</au><au>Shchelchkov, A.</au><au>Simion, S.</au><au>Sonderegger, P.</au><au>Soustruznik, K.</au><au>Tang, F.</au><au>Tokar, S.</au><au>Turcotte, M.</au><au>Vorozhtsov, S.</au><au>Wingerter-Seez, I.</au><au>Zdrazil, M.</au><au>Zitoun, R.</au><au>Zolnierowski, Y.P.</au><aucorp>ATLAS Collaboration (Calorimetry and Data Acquisition)</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Results from a combined test of an electromagnetic liquid argon calorimeter with a hadronic scintillating-tile calorimeter</atitle><jtitle>Nuclear instruments &amp; methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment</jtitle><date>1997-03-11</date><risdate>1997</risdate><volume>387</volume><issue>3</issue><spage>333</spage><epage>351</epage><pages>333-351</pages><issn>0168-9002</issn><eissn>1872-9576</eissn><abstract>The first combined test of an electromagnetic liquid argon accordion calorimeter and a hadronic scintillating-tile calorimeter was carried out at the CERN SPS. These devices are prototypes of the barrel calorimeter of the future ATLAS experiment at the LHC. The energy resolution of pions in the energy range from 20 to 300 GeV at an incident angle θ of about 11° is well-described by the expression σ E = (( 46.5 ± 6.0% √E+(1.2±0.3)% ) ⊕ (3.2±0.4) GeV E . Shower profiles, shower leakage, and the angular resolution of hadronic showers were also studied.</abstract><pub>Elsevier B.V</pub><doi>10.1016/S0168-9002(97)00075-2</doi><tpages>19</tpages><orcidid>https://orcid.org/0000-0002-6301-5854</orcidid><orcidid>https://orcid.org/0000-0002-7496-3796</orcidid><orcidid>https://orcid.org/0000-0002-7328-7829</orcidid><orcidid>https://orcid.org/0000-0001-9386-8148</orcidid><orcidid>https://orcid.org/0000-0002-3461-3249</orcidid><orcidid>https://orcid.org/0000-0001-7369-6975</orcidid><oa>free_for_read</oa></addata></record>
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ispartof Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 1997-03, Vol.387 (3), p.333-351
issn 0168-9002
1872-9576
language eng
recordid cdi_hal_primary_oai_HAL_in2p3_00001227v1
source Elsevier ScienceDirect Journals Complete
subjects Instrumentation and Detectors
Physics
title Results from a combined test of an electromagnetic liquid argon calorimeter with a hadronic scintillating-tile calorimeter
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