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Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study

The Yano-Koonin-Podgoretskii (YKP) parametrisation of Hanbury Brown-Twiss (HBT) two-particle correlation functions opens new strategies for extracting the emission duration and testing the longitudinal expansion in heavy-ion collisions. Based on the recently derived model-independent expressions, we...

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Detalles Bibliográficos
Autores principales: Wu, Y.F., Heinz, Ulrich W., Tomasik, B., Wiedemann, U.A.
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s100520050109
http://cds.cern.ch/record/307505
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author Wu, Y.F.
Heinz, Ulrich W.
Tomasik, B.
Wiedemann, U.A.
author_facet Wu, Y.F.
Heinz, Ulrich W.
Tomasik, B.
Wiedemann, U.A.
author_sort Wu, Y.F.
collection CERN
description The Yano-Koonin-Podgoretskii (YKP) parametrisation of Hanbury Brown-Twiss (HBT) two-particle correlation functions opens new strategies for extracting the emission duration and testing the longitudinal expansion in heavy-ion collisions. Based on the recently derived model-independent expressions, we present a detailed parameter study of the YKP parameters for a finite, hydrodynamically expanding source model of heavy-ion collisions. For the class of models studied here, we show that the three YKP radius parameters have an interpretation as longitudinal extension, transverse extension and emission duration of the source in the YKP frame. This frame is specified by the fourth fit parameter, the Yano-Koonin velocity which describes to a good approximation the velocity of the fluid element with highest emissivity and allows to test for the longitudinal expansion of the source. Deviations from this interpretation of the YKP parameters are discussed quantitatively.
id cern-307505
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-3075052023-03-14T17:12:12Zdoi:10.1007/s100520050109http://cds.cern.ch/record/307505engWu, Y.F.Heinz, Ulrich W.Tomasik, B.Wiedemann, U.A.Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical StudyNuclear Physics - TheoryThe Yano-Koonin-Podgoretskii (YKP) parametrisation of Hanbury Brown-Twiss (HBT) two-particle correlation functions opens new strategies for extracting the emission duration and testing the longitudinal expansion in heavy-ion collisions. Based on the recently derived model-independent expressions, we present a detailed parameter study of the YKP parameters for a finite, hydrodynamically expanding source model of heavy-ion collisions. For the class of models studied here, we show that the three YKP radius parameters have an interpretation as longitudinal extension, transverse extension and emission duration of the source in the YKP frame. This frame is specified by the fourth fit parameter, the Yano-Koonin velocity which describes to a good approximation the velocity of the fluid element with highest emissivity and allows to test for the longitudinal expansion of the source. Deviations from this interpretation of the YKP parameters are discussed quantitatively.The Yano-Koonin-Podgoretskii (YKP) parametrisation of Hanbury Brown-Twiss (HBT) two-particle correlation functions opens new strategies for extracting the emission duration and testing the longitudinal expansion in heavy-ion collisions. Based on the recently derived model-independent expressions, we present a detailed parameter study of the YKP parameters for a finite, hydrodynamically expanding source model of heavy-ion collisions. For the class of models studied here, we show that the three YKP radius parameters have an interpretation as longitudinal extension, transverse extension and emission duration of the source in the YKP frame. This frame is specified by the fourth fit parameter, the Yano-Koonin velocity which describes to a good approximation the velocity of the fluid element with highest emissivity and allows to test for the longitudinal expansion of the source. Deviations from this interpretation of the YKP parameters are discussed quantitatively.The Yano-Koonin-Podgoretskii (YKP) parametrisation of Hanbury Brown-Twiss (HBT) two-particle correlation functions opens new strategies for extracting the emission duration and testing the longitudinal expansion in heavy-ion collisions. Based on the recently derived model-independent expressions, we present a detailed parameter study of the YKP parameters for a finite, hydrodynamically expanding source model of heavy-ion collisions. For the class of models studied here, we show that the three YKP radius parameters have an interpretation as longitudinal extension, transverse extension and emission duration of the source in the YKP frame. This frame is specified by the fourth fit parameter, the Yano-Koonin velocity which describes to a good approximation the velocity of the fluid element with highest emissivity and allows to test for the longitudinal expansion of the source. Deviations from this interpretation of the YKP parameters are discussed quantitatively.nucl-th/9607044TPR-96-12HZPP-96-7TPR-96-12;HZPP-96-7oai:cds.cern.ch:3075051996-07-23
spellingShingle Nuclear Physics - Theory
Wu, Y.F.
Heinz, Ulrich W.
Tomasik, B.
Wiedemann, U.A.
Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title_full Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title_fullStr Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title_full_unstemmed Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title_short Yano-Koonin-Podgoretskii Parametrisation of the HBT Correlator: A Numerical Study
title_sort yano-koonin-podgoretskii parametrisation of the hbt correlator: a numerical study
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1007/s100520050109
http://cds.cern.ch/record/307505
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