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Two-Particle Correlations from the q-Boson Viewpoint

We propose and develop to some extent a novel approach, which allows us to effectively describe, for relativistic heavy-ion collisions, the empirically observed deviation from unity of the intercept $\lambda$ (i.e. the measured value corresponding to zero relative momentum ${\bf p}$ of two registere...

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Autores principales: Anchishkin, D.V., Gavrilik, A.M., Iorgov, N.Z.
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1007/PL00013603
https://dx.doi.org/10.1007/s100500050386
http://cds.cern.ch/record/390431
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author Anchishkin, D.V.
Gavrilik, A.M.
Iorgov, N.Z.
author_facet Anchishkin, D.V.
Gavrilik, A.M.
Iorgov, N.Z.
author_sort Anchishkin, D.V.
collection CERN
description We propose and develop to some extent a novel approach, which allows us to effectively describe, for relativistic heavy-ion collisions, the empirically observed deviation from unity of the intercept $\lambda$ (i.e. the measured value corresponding to zero relative momentum ${\bf p}$ of two registered pions or kaons) of the two-particle correlation function C(p,K). The approach is based on the use of two versions of the so-called q-deformed oscillators and the corresponding picture of ideal gases of q-bosons. By these techniques the intercept $\lambda$ is put into direct correspondence with the deformation parameter q.
id cern-390431
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-3904312023-03-14T19:57:36Zdoi:10.1007/PL00013603doi:10.1007/s100500050386http://cds.cern.ch/record/390431engAnchishkin, D.V.Gavrilik, A.M.Iorgov, N.Z.Two-Particle Correlations from the q-Boson ViewpointNuclear Physics - TheoryWe propose and develop to some extent a novel approach, which allows us to effectively describe, for relativistic heavy-ion collisions, the empirically observed deviation from unity of the intercept $\lambda$ (i.e. the measured value corresponding to zero relative momentum ${\bf p}$ of two registered pions or kaons) of the two-particle correlation function C(p,K). The approach is based on the use of two versions of the so-called q-deformed oscillators and the corresponding picture of ideal gases of q-bosons. By these techniques the intercept $\lambda$ is put into direct correspondence with the deformation parameter q.We propose and develop to some extent a novel approach, which allows us to effectively describe, for relativistic heavy-ion collisions, the empirically observed deviation from unity of the intercept \lambda (i.e. the measured value corresponding to zero relative momentum {\bf p} of two registered identical pions or kaons) of the two-particle correlation function C(p,K). The approach is based on the use of two versions of the so-called q-deformed oscillators and the corresponding picture of ideal gases of q-bosons. By these techniques the intercept \lambda is put into direct correspondence with the deformation parameter q. For fixed deformation strength, the model predicts dependence of the intercept \lambda on the pion pair mean momentum {\bf K}.nucl-th/9906034CERN-TH-99-177CERN-TH-99-177oai:cds.cern.ch:3904311999-06-15
spellingShingle Nuclear Physics - Theory
Anchishkin, D.V.
Gavrilik, A.M.
Iorgov, N.Z.
Two-Particle Correlations from the q-Boson Viewpoint
title Two-Particle Correlations from the q-Boson Viewpoint
title_full Two-Particle Correlations from the q-Boson Viewpoint
title_fullStr Two-Particle Correlations from the q-Boson Viewpoint
title_full_unstemmed Two-Particle Correlations from the q-Boson Viewpoint
title_short Two-Particle Correlations from the q-Boson Viewpoint
title_sort two-particle correlations from the q-boson viewpoint
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1007/PL00013603
https://dx.doi.org/10.1007/s100500050386
http://cds.cern.ch/record/390431
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