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author Wessels, J P
Adamova, D
Agakichiev, G
Appelshuser, H
Belaga, V
Braun-Munzinger, P
Campagnolo, R
Castillo, A
Cherlin, A
Damjanovic, S
Dietel, T
Dietrich, L
Drees, A
Esumi, S I
Filimonov, K
Fomenko, K
Fraenkel, Zeev
Garabatos, C
Glässel, P
Hering, G
Holeczek, J
Kushpil, V
Lenkeit, B C
Ludolphs, W
Maas, A
Marin, A
Messer, F
Milosevic, J
Milov, A
Mikowiec, D
Musa, L
Panebratsev, Yu A
Petchenova, O Yu
Petracek, V
Pfeiffer, A
Rak, J
Ravinovich, I
Rehak, P
Richter, M
Sako, H
Schmitz, W
Schükraft, J
Sedykh, S
Seipp, W
Sharma, A
Shimansky, S S
Slivova, J
Specht, H J
Stachel, J
Sumbera, M
Tilsner, H
Tserruya, Itzhak
Wienold, T
Windelband, B
Wurm, J P
Xie, W
Yurevich, S
Yurevich, V
author_facet Wessels, J P
Adamova, D
Agakichiev, G
Appelshuser, H
Belaga, V
Braun-Munzinger, P
Campagnolo, R
Castillo, A
Cherlin, A
Damjanovic, S
Dietel, T
Dietrich, L
Drees, A
Esumi, S I
Filimonov, K
Fomenko, K
Fraenkel, Zeev
Garabatos, C
Glässel, P
Hering, G
Holeczek, J
Kushpil, V
Lenkeit, B C
Ludolphs, W
Maas, A
Marin, A
Messer, F
Milosevic, J
Milov, A
Mikowiec, D
Musa, L
Panebratsev, Yu A
Petchenova, O Yu
Petracek, V
Pfeiffer, A
Rak, J
Ravinovich, I
Rehak, P
Richter, M
Sako, H
Schmitz, W
Schükraft, J
Sedykh, S
Seipp, W
Sharma, A
Shimansky, S S
Slivova, J
Specht, H J
Stachel, J
Sumbera, M
Tilsner, H
Tserruya, Itzhak
Wienold, T
Windelband, B
Wurm, J P
Xie, W
Yurevich, S
Yurevich, V
author_sort Wessels, J P
collection CERN
description In this talk latest results from the analysis of $e^{+}e^{-}$ pairs emitted in Pb + Au collisions at 40 AGeV/c and a combined analysis of all data available at 158 AGeV/c are presented. The enhancement of low-mass $e^{+}e^{-}$ pairs $(m_{ee}>0.2 GeV/c^{2})$ with respect to the expected yield from hadron decays first reported at 158 AGeV/c is also found at 40 AGeV/c and is even larger there. Comparing to various theoretical models based on $\pi^{+}\pi^{-}$ annihilation, the data can only be reproduced, if the properties of the intermediate $\rho$ in the hot and dense medium are modified. Theoretically, the modification is linked to baryon density rather than temperature. Constraints from hadron data taken at the same beam energies indeed indicate a fireball evolution along a trajectory of higher baryon density at 40 AGeV/c, consistent with the observed larger enhancement factor.
id cern-597104
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5971042019-09-30T06:29:59Zdoi:10.1016/S0375-9474(02)01435-5http://cds.cern.ch/record/597104engWessels, J PAdamova, DAgakichiev, GAppelshuser, HBelaga, VBraun-Munzinger, PCampagnolo, RCastillo, ACherlin, ADamjanovic, SDietel, TDietrich, LDrees, AEsumi, S IFilimonov, KFomenko, KFraenkel, ZeevGarabatos, CGlässel, PHering, GHoleczek, JKushpil, VLenkeit, B CLudolphs, WMaas, AMarin, AMesser, FMilosevic, JMilov, AMikowiec, DMusa, LPanebratsev, Yu APetchenova, O YuPetracek, VPfeiffer, ARak, JRavinovich, IRehak, PRichter, MSako, HSchmitz, WSchükraft, JSedykh, SSeipp, WSharma, AShimansky, S SSlivova, JSpecht, H JStachel, JSumbera, MTilsner, HTserruya, ItzhakWienold, TWindelband, BWurm, J PXie, WYurevich, SYurevich, VLatest results from CERES/NA45Nuclear Physics - ExperimentIn this talk latest results from the analysis of $e^{+}e^{-}$ pairs emitted in Pb + Au collisions at 40 AGeV/c and a combined analysis of all data available at 158 AGeV/c are presented. The enhancement of low-mass $e^{+}e^{-}$ pairs $(m_{ee}>0.2 GeV/c^{2})$ with respect to the expected yield from hadron decays first reported at 158 AGeV/c is also found at 40 AGeV/c and is even larger there. Comparing to various theoretical models based on $\pi^{+}\pi^{-}$ annihilation, the data can only be reproduced, if the properties of the intermediate $\rho$ in the hot and dense medium are modified. Theoretically, the modification is linked to baryon density rather than temperature. Constraints from hadron data taken at the same beam energies indeed indicate a fireball evolution along a trajectory of higher baryon density at 40 AGeV/c, consistent with the observed larger enhancement factor.nucl-ex/0212015oai:cds.cern.ch:5971042002-12-13
spellingShingle Nuclear Physics - Experiment
Wessels, J P
Adamova, D
Agakichiev, G
Appelshuser, H
Belaga, V
Braun-Munzinger, P
Campagnolo, R
Castillo, A
Cherlin, A
Damjanovic, S
Dietel, T
Dietrich, L
Drees, A
Esumi, S I
Filimonov, K
Fomenko, K
Fraenkel, Zeev
Garabatos, C
Glässel, P
Hering, G
Holeczek, J
Kushpil, V
Lenkeit, B C
Ludolphs, W
Maas, A
Marin, A
Messer, F
Milosevic, J
Milov, A
Mikowiec, D
Musa, L
Panebratsev, Yu A
Petchenova, O Yu
Petracek, V
Pfeiffer, A
Rak, J
Ravinovich, I
Rehak, P
Richter, M
Sako, H
Schmitz, W
Schükraft, J
Sedykh, S
Seipp, W
Sharma, A
Shimansky, S S
Slivova, J
Specht, H J
Stachel, J
Sumbera, M
Tilsner, H
Tserruya, Itzhak
Wienold, T
Windelband, B
Wurm, J P
Xie, W
Yurevich, S
Yurevich, V
Latest results from CERES/NA45
title Latest results from CERES/NA45
title_full Latest results from CERES/NA45
title_fullStr Latest results from CERES/NA45
title_full_unstemmed Latest results from CERES/NA45
title_short Latest results from CERES/NA45
title_sort latest results from ceres/na45
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1016/S0375-9474(02)01435-5
http://cds.cern.ch/record/597104
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