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Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry

Intensity interferometry in noncentral heavy ion collisions provides access to novel and unexplored information on the geometry of the effective pion-emitting source. We demonstrate analytically that, even for vanishing pair momentum, the cross terms $R_{ol}^2$ and $R_{sl}^2$ of the HBT correlation...

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Detalles Bibliográficos
Autores principales: Lisa, M A, Heinz, Ulrich W, Wiedemann, Urs Achim
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(00)00952-7
http://cds.cern.ch/record/430550
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author Lisa, M A
Heinz, Ulrich W
Wiedemann, Urs Achim
author_facet Lisa, M A
Heinz, Ulrich W
Wiedemann, Urs Achim
author_sort Lisa, M A
collection CERN
description Intensity interferometry in noncentral heavy ion collisions provides access to novel and unexplored information on the geometry of the effective pion-emitting source. We demonstrate analytically that, even for vanishing pair momentum, the cross terms $R_{ol}^2$ and $R_{sl}^2$ of the HBT correlation function in general show a strong first harmonic in their azimuthal dependence. The strength of this oscillation characterizes the tilt of the major axis of the emission ellipsoid within the reaction plane away from the direction of the beam. Event generator studies indicate that this tilt can be large (>20 degrees) at AGS energies which makes it by far the most significant azimuthally sensitive HBT signal at these energies. Moreover, transport models suggest that for pions this spatial tilt is directed opposite to the tilt of the directed flow ellipsoid in momentum space. A measurement of the azimuthal dependence of the HBT cross terms $R_{ol}^2$ and $R_{sl}^2$ thus probes directly the physical origin of pion directed flow.
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publishDate 2000
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spelling cern-4305502019-09-30T06:29:59Zdoi:10.1016/S0370-2693(00)00952-7http://cds.cern.ch/record/430550engLisa, M AHeinz, Ulrich WWiedemann, Urs AchimTilted Pion Sources from Azimuthally Sensitive HBT InterferometryNuclear Physics - TheoryIntensity interferometry in noncentral heavy ion collisions provides access to novel and unexplored information on the geometry of the effective pion-emitting source. We demonstrate analytically that, even for vanishing pair momentum, the cross terms $R_{ol}^2$ and $R_{sl}^2$ of the HBT correlation function in general show a strong first harmonic in their azimuthal dependence. The strength of this oscillation characterizes the tilt of the major axis of the emission ellipsoid within the reaction plane away from the direction of the beam. Event generator studies indicate that this tilt can be large (>20 degrees) at AGS energies which makes it by far the most significant azimuthally sensitive HBT signal at these energies. Moreover, transport models suggest that for pions this spatial tilt is directed opposite to the tilt of the directed flow ellipsoid in momentum space. A measurement of the azimuthal dependence of the HBT cross terms $R_{ol}^2$ and $R_{sl}^2$ thus probes directly the physical origin of pion directed flow.nucl-th/0003022CERN-TH-2000-076oai:cds.cern.ch:4305502000-03-10
spellingShingle Nuclear Physics - Theory
Lisa, M A
Heinz, Ulrich W
Wiedemann, Urs Achim
Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title_full Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title_fullStr Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title_full_unstemmed Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title_short Tilted Pion Sources from Azimuthally Sensitive HBT Interferometry
title_sort tilted pion sources from azimuthally sensitive hbt interferometry
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(00)00952-7
http://cds.cern.ch/record/430550
work_keys_str_mv AT lisama tiltedpionsourcesfromazimuthallysensitivehbtinterferometry
AT heinzulrichw tiltedpionsourcesfromazimuthallysensitivehbtinterferometry
AT wiedemannursachim tiltedpionsourcesfromazimuthallysensitivehbtinterferometry