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Thermal Dileptons from Hot and Dense Strongly Interacting Matter
The NA60 experiment at the CERN SPS has studied muon-pair production in 158A GeV In-In collisions. The unprecedented precision of the data has allowed to isolate a strong excess of pairs above the known sources in the whole invariant mass region 0.2<M<2.6 GeV. The (mostly) Planck-like shape of...
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Lenguaje: | eng |
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2010
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Acceso en línea: | https://dx.doi.org/10.1063/1.3541982 http://cds.cern.ch/record/1304465 |
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author | Specht, Hans J. |
author_facet | Specht, Hans J. |
author_sort | Specht, Hans J. |
collection | CERN |
description | The NA60 experiment at the CERN SPS has studied muon-pair production in 158A GeV In-In collisions. The unprecedented precision of the data has allowed to isolate a strong excess of pairs above the known sources in the whole invariant mass region 0.2<M<2.6 GeV. The (mostly) Planck-like shape of the mass spectra, exponential m_T spectra, zero polarization and the general agreement with thermal-model results allow for a consistent interpretation of the excess dimuons as thermal radiation from a randomized system. For M<1 GeV, the process pi+pi- -> rho -> mu+mu- dominates. The associated space-time averaged rho spectral function shows a nearly diverging width in approaching chiral symmetry restoration, but essentially no shift in mass. Some in-medium effects are also seen for the omega, but not for the phi. For M>1 GeV, the average temperature associated with the mass spectrum is about 200 MeV, considerably above T_c=170 MeV, implying a transition to dominantly partonic emission sources in this region. The transition itself is mirrored by a large jump-like drop in the inverse slope of the transverse mass spectra around 1 GeV. |
id | cern-1304465 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2010 |
record_format | invenio |
spelling | cern-13044652021-05-03T20:08:16Zdoi:10.1063/1.3541982http://cds.cern.ch/record/1304465engSpecht, Hans J.Thermal Dileptons from Hot and Dense Strongly Interacting MatterNuclear Physics - ExperimentThe NA60 experiment at the CERN SPS has studied muon-pair production in 158A GeV In-In collisions. The unprecedented precision of the data has allowed to isolate a strong excess of pairs above the known sources in the whole invariant mass region 0.2<M<2.6 GeV. The (mostly) Planck-like shape of the mass spectra, exponential m_T spectra, zero polarization and the general agreement with thermal-model results allow for a consistent interpretation of the excess dimuons as thermal radiation from a randomized system. For M<1 GeV, the process pi+pi- -> rho -> mu+mu- dominates. The associated space-time averaged rho spectral function shows a nearly diverging width in approaching chiral symmetry restoration, but essentially no shift in mass. Some in-medium effects are also seen for the omega, but not for the phi. For M>1 GeV, the average temperature associated with the mass spectrum is about 200 MeV, considerably above T_c=170 MeV, implying a transition to dominantly partonic emission sources in this region. The transition itself is mirrored by a large jump-like drop in the inverse slope of the transverse mass spectra around 1 GeV.The NA60 experiment at the CERN SPS has studied muon-pair production in 158A GeV In-In collisions. The unprecedented precision of the data has allowed to isolate a strong excess of pairs above the known sources in the whole invariant mass region 0.2<M<2.6 GeV. The (mostly) Planck-like shape of the mass spectra, exponential mT spectra, zero polarization and the general agreement with thermal-model results allow for a consistent interpretation of the excess dimuons as thermal radiation from a randomized system. For M<1 GeV, the process π+π−→ρ→μ+μ− dominates. The associated space-time averaged ρ spectral function shows a nearly diverging width in approaching chiral symmetry restoration, but essentially no shift in mass. Some in-medium effects are also seen for the ω, but not for the φ. For M>1 GeV, the average temperature associated with the mass spectrum is about 200 MeV, considerably above Tc = 170 MeV, implying a transition to dominantly partonic emission sources in this region. The transition itself is mirrored by a large jump-like drop in the inverse slope of the transverse mass spectra around 1 GeV.The NA60 experiment at the CERN SPS has studied muon-pair production in 158A GeV In-In collisions. The unprecedented precision of the data has allowed to isolate a strong excess of pairs above the known sources in the whole invariant mass region 0.2<M<2.6 GeV. The (mostly) Planck-like shape of the mass spectra, exponential m_T spectra, zero polarization and the general agreement with thermal-model results allow for a consistent interpretation of the excess dimuons as thermal radiation from a randomized system. For M<1 GeV, the process pi+pi- -> rho -> mu+mu- dominates. The associated space-time averaged rho spectral function shows a nearly diverging width in approaching chiral symmetry restoration, but essentially no shift in mass. Some in-medium effects are also seen for the omega, but not for the phi. For M>1 GeV, the average temperature associated with the mass spectrum is about 200 MeV, considerably above T_c=170 MeV, implying a transition to dominantly partonic emission sources in this region. The transition itself is mirrored by a large jump-like drop in the inverse slope of the transverse mass spectra around 1 GeV.arXiv:1011.0615oai:cds.cern.ch:13044652010-11-03 |
spellingShingle | Nuclear Physics - Experiment Specht, Hans J. Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title | Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title_full | Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title_fullStr | Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title_full_unstemmed | Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title_short | Thermal Dileptons from Hot and Dense Strongly Interacting Matter |
title_sort | thermal dileptons from hot and dense strongly interacting matter |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1063/1.3541982 http://cds.cern.ch/record/1304465 |
work_keys_str_mv | AT spechthansj thermaldileptonsfromhotanddensestronglyinteractingmatter |