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Quantum Mechanical Localization Effects for Bose-Einstein Correlations

For a set of N identical massive boson wavepackets with optimal initial quantum mechanical localization, we derive the Hanbury-Brown/Twiss (HBT) two-particle correlation function. Our result provides finite multiplicity corrections to the coherent state formalism and allows to trace back an error in...

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Detalles Bibliográficos
Autores principales: Wiedemann, Urs Achim, Foka, P Y, Kalechofsky, H, Martin, M, Slotta, C, Zhang, Q H
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.56.R614
http://cds.cern.ch/record/322773
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author Wiedemann, Urs Achim
Foka, P Y
Kalechofsky, H
Martin, M
Slotta, C
Zhang, Q H
author_facet Wiedemann, Urs Achim
Foka, P Y
Kalechofsky, H
Martin, M
Slotta, C
Zhang, Q H
author_sort Wiedemann, Urs Achim
collection CERN
description For a set of N identical massive boson wavepackets with optimal initial quantum mechanical localization, we derive the Hanbury-Brown/Twiss (HBT) two-particle correlation function. Our result provides finite multiplicity corrections to the coherent state formalism and allows to trace back an error in the so-called cos-prescription. It suggests that what the HBT radius parameters in very small boson emitting systems (e.g. Z_0-decays, p-pbar annihilation) measure is essentially the initial spatial wavepacket width. Both one- and two-particle spectra depend explicitly on this width. Our derivation gives an algorithm for calculating one-particle spectra and two-particle correlations from an arbitrary phase space occupation (q_i,p_i,t_i) as e.g. returned by event generators of heavy ion collisions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
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spelling cern-3227732019-09-30T06:29:59Zdoi:10.1103/PhysRevC.56.R614http://cds.cern.ch/record/322773engWiedemann, Urs AchimFoka, P YKalechofsky, HMartin, MSlotta, CZhang, Q HQuantum Mechanical Localization Effects for Bose-Einstein CorrelationsNuclear Physics - TheoryFor a set of N identical massive boson wavepackets with optimal initial quantum mechanical localization, we derive the Hanbury-Brown/Twiss (HBT) two-particle correlation function. Our result provides finite multiplicity corrections to the coherent state formalism and allows to trace back an error in the so-called cos-prescription. It suggests that what the HBT radius parameters in very small boson emitting systems (e.g. Z_0-decays, p-pbar annihilation) measure is essentially the initial spatial wavepacket width. Both one- and two-particle spectra depend explicitly on this width. Our derivation gives an algorithm for calculating one-particle spectra and two-particle correlations from an arbitrary phase space occupation (q_i,p_i,t_i) as e.g. returned by event generators of heavy ion collisions.nucl-th/9703046oai:cds.cern.ch:3227731997
spellingShingle Nuclear Physics - Theory
Wiedemann, Urs Achim
Foka, P Y
Kalechofsky, H
Martin, M
Slotta, C
Zhang, Q H
Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title_full Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title_fullStr Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title_full_unstemmed Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title_short Quantum Mechanical Localization Effects for Bose-Einstein Correlations
title_sort quantum mechanical localization effects for bose-einstein correlations
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1103/PhysRevC.56.R614
http://cds.cern.ch/record/322773
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