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Low Mass Dileptons from Pb+Au Collisions at CERN SPS

We show that the dilepton spectra measured by the CERES collaboration in Pb + Au interactions for various charge multiplicities can be reproduced by a hadronic initial state with reduction in the masses of the vector mesons in the thermal bath. Though such an effect may also be achieved by a large b...

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Detalles Bibliográficos
Autores principales: Sarkar, Sourav, Alam, Jan-e, Hatsuda, T
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/476573
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author Sarkar, Sourav
Alam, Jan-e
Hatsuda, T
author_facet Sarkar, Sourav
Alam, Jan-e
Hatsuda, T
author_sort Sarkar, Sourav
collection CERN
description We show that the dilepton spectra measured by the CERES collaboration in Pb + Au interactions for various charge multiplicities can be reproduced by a hadronic initial state with reduction in the masses of the vector mesons in the thermal bath. Though such an effect may also be achieved by a large broadening of the spectral function we show that the photon spectra is insensitive to this. It is found that for higher multiplicities a good description of the data can also be obtained with quark gluon plasma initial state if the reduction of the vector meson masses in the mixed and hadronic phases is taken into account. We observe that a thermal source with initial temperature $\sim 200$ MeV can reproduce the observed enhancement in the low mass region of the dilepton spectra. It is not possible to state which one of the two initial states (QGP or hadronic) is compatible with the data. These findings are in agreement with our earlier results obtained from the analysis of the WA98 photon spectra. We estimate the number of $\pi-\pi$ collisions near the $\rho$-peak of the dilepton spectra and argue that thermal equilibrium may have been achieved in the system, justifying the use of hydrodynamical model to describe the space time evolution.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4765732020-03-12T03:47:15Zhttp://cds.cern.ch/record/476573engSarkar, SouravAlam, Jan-eHatsuda, TLow Mass Dileptons from Pb+Au Collisions at CERN SPSNuclear Physics - TheoryWe show that the dilepton spectra measured by the CERES collaboration in Pb + Au interactions for various charge multiplicities can be reproduced by a hadronic initial state with reduction in the masses of the vector mesons in the thermal bath. Though such an effect may also be achieved by a large broadening of the spectral function we show that the photon spectra is insensitive to this. It is found that for higher multiplicities a good description of the data can also be obtained with quark gluon plasma initial state if the reduction of the vector meson masses in the mixed and hadronic phases is taken into account. We observe that a thermal source with initial temperature $\sim 200$ MeV can reproduce the observed enhancement in the low mass region of the dilepton spectra. It is not possible to state which one of the two initial states (QGP or hadronic) is compatible with the data. These findings are in agreement with our earlier results obtained from the analysis of the WA98 photon spectra. We estimate the number of $\pi-\pi$ collisions near the $\rho$-peak of the dilepton spectra and argue that thermal equilibrium may have been achieved in the system, justifying the use of hydrodynamical model to describe the space time evolution.We show that the dilepton spectra measured by the CERES collaboration in Pb + Au interactions for various charge multiplicities can be reproduced by a hadronic initial state with reduction in the masses of the vector mesons in the thermal bath. Though such an effect may also be achieved by a large broadening of the spectral function we show that the photon spectra is insensitive to this. It is found that for higher multiplicities a good description of the data can also be obtained with quark gluon plasma initial state if the reduction of the vector meson masses in the mixed and hadronic phases is taken into account. We observe that a thermal source with initial temperature ~ 200 MeV can reproduce the observed enhancement in the low mass region of the dilepton spectra. It is not possible to state which one of the two initial states (QGP or hadronic) is compatible with the data. These findings are in agreement with our earlier results obtained from the analysis of the WA98 photon spectra. We estimate the number of pion-pion collisions near the rho-peak of the dilepton spectra and argue that thermal equilibrium may have been achieved in the system, justifying the use of hydrodynamical model to describe the space time evolution.nucl-th/0011032oai:cds.cern.ch:4765732000-11-09
spellingShingle Nuclear Physics - Theory
Sarkar, Sourav
Alam, Jan-e
Hatsuda, T
Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title_full Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title_fullStr Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title_full_unstemmed Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title_short Low Mass Dileptons from Pb+Au Collisions at CERN SPS
title_sort low mass dileptons from pb+au collisions at cern sps
topic Nuclear Physics - Theory
url http://cds.cern.ch/record/476573
work_keys_str_mv AT sarkarsourav lowmassdileptonsfrompbaucollisionsatcernsps
AT alamjane lowmassdileptonsfrompbaucollisionsatcernsps
AT hatsudat lowmassdileptonsfrompbaucollisionsatcernsps