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Annihilation Mechanism of Dilepton Emission from Finite Fireball

Medium-induced modifications of the pion and quark-antiquark annihilation mechanisms of dilepton production during relativistic heavy ion collisions are considered. Due to the dense hadron environment, the pions produced during a collision are effectively confined in a finite volume, in which they l...

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Detalles Bibliográficos
Autores principales: Anchishkin, D V, Khryapa, V M, Naryshkin, R, Ruuskanen, P V
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/818825
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author Anchishkin, D V
Khryapa, V M
Naryshkin, R
Ruuskanen, P V
author_facet Anchishkin, D V
Khryapa, V M
Naryshkin, R
Ruuskanen, P V
author_sort Anchishkin, D V
collection CERN
description Medium-induced modifications of the pion and quark-antiquark annihilation mechanisms of dilepton production during relativistic heavy ion collisions are considered. Due to the dense hadron environment, the pions produced during a collision are effectively confined in a finite volume, in which they live for a finite time which is scaled as the lifetime of a fireball. Our results indicate that, due to the space-time finiteness of the pion system which generates the corresponding quantum randomization, the dilepton rates are finite in the invariant low-mass region M<2m_\pi. It is found that the spatial finiteness of quark wave functions and the finiteness of the lifetime of excited states result in the same effect for the quark-antiquark annihilation to dileptons. The breaking of the detailed energy-momentum conservation due to the broken translation invariance is discussed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
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spelling cern-8188252019-09-30T06:29:59Zhttp://cds.cern.ch/record/818825engAnchishkin, D VKhryapa, V MNaryshkin, RRuuskanen, P VAnnihilation Mechanism of Dilepton Emission from Finite FireballNuclear Physics - TheoryMedium-induced modifications of the pion and quark-antiquark annihilation mechanisms of dilepton production during relativistic heavy ion collisions are considered. Due to the dense hadron environment, the pions produced during a collision are effectively confined in a finite volume, in which they live for a finite time which is scaled as the lifetime of a fireball. Our results indicate that, due to the space-time finiteness of the pion system which generates the corresponding quantum randomization, the dilepton rates are finite in the invariant low-mass region M<2m_\pi. It is found that the spatial finiteness of quark wave functions and the finiteness of the lifetime of excited states result in the same effect for the quark-antiquark annihilation to dileptons. The breaking of the detailed energy-momentum conservation due to the broken translation invariance is discussed.nucl-th/0407042BITP-2004-25-Eoai:cds.cern.ch:8188252004-07-15
spellingShingle Nuclear Physics - Theory
Anchishkin, D V
Khryapa, V M
Naryshkin, R
Ruuskanen, P V
Annihilation Mechanism of Dilepton Emission from Finite Fireball
title Annihilation Mechanism of Dilepton Emission from Finite Fireball
title_full Annihilation Mechanism of Dilepton Emission from Finite Fireball
title_fullStr Annihilation Mechanism of Dilepton Emission from Finite Fireball
title_full_unstemmed Annihilation Mechanism of Dilepton Emission from Finite Fireball
title_short Annihilation Mechanism of Dilepton Emission from Finite Fireball
title_sort annihilation mechanism of dilepton emission from finite fireball
topic Nuclear Physics - Theory
url http://cds.cern.ch/record/818825
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