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Medium-modifications of $g\to c \bar{c}$ splitting

We study medium-modifications of the gluon splitting into a quark and anti-quark pair. Applying the Baier-Dokshitzer-Mueller-Peigné-Schiff and Zakharov (BDMPS-Z) formalism, we derive a path-integral formula for the in-medium g → qq¯ splitting function in the close-to-eikonal limit. Our analysis show...

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Autor principal: Park, Sohyun
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1051/epjconf/202327602018
http://cds.cern.ch/record/2847464
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author Park, Sohyun
author_facet Park, Sohyun
author_sort Park, Sohyun
collection CERN
description We study medium-modifications of the gluon splitting into a quark and anti-quark pair. Applying the Baier-Dokshitzer-Mueller-Peigné-Schiff and Zakharov (BDMPS-Z) formalism, we derive a path-integral formula for the in-medium g → qq¯ splitting function in the close-to-eikonal limit. Our analysis shows that there are two qualitatively different medium effects: transverse momentum broadening of qq¯ pairs and enhanced production of such pairs. We note that both effects are numerically sizeable if the average momentum transfer from the medium to the parton is at the quark mass scale. In ultra-relativistic heavy-ion collisions, this condition is realized by charm quarks, therefore we focus our numerical analysis on the medium-modifications of g → cc¯ splitting.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28474642023-03-24T03:53:26Zdoi:10.1051/epjconf/202327602018http://cds.cern.ch/record/2847464engPark, SohyunMedium-modifications of $g\to c \bar{c}$ splittinghep-phParticle Physics - PhenomenologyWe study medium-modifications of the gluon splitting into a quark and anti-quark pair. Applying the Baier-Dokshitzer-Mueller-Peigné-Schiff and Zakharov (BDMPS-Z) formalism, we derive a path-integral formula for the in-medium g → qq¯ splitting function in the close-to-eikonal limit. Our analysis shows that there are two qualitatively different medium effects: transverse momentum broadening of qq¯ pairs and enhanced production of such pairs. We note that both effects are numerically sizeable if the average momentum transfer from the medium to the parton is at the quark mass scale. In ultra-relativistic heavy-ion collisions, this condition is realized by charm quarks, therefore we focus our numerical analysis on the medium-modifications of g → cc¯ splitting.We study medium-modifications of the gluon splitting into a quark and anti-quark pair. Applying the Baier-Dokshitzer-Mueller-Peigné-Schiff and Zakharov (BDMPS-Z) formalism, we derive a path-integral formula for the in-medium $g\to q \bar{q}$ splitting function in the close-to-eikonal limit. Our analysis shows that there are two qualitatively different medium effects: transverse momentum broadening of $q \bar{q}$ pairs and enhanced production of such pairs. We note that both effects are numerically sizeable if the average momentum transfer from the medium to the parton is at the quark mass scale. In ultra-relativistic heavy-ion collisions, this condition is realized by charm quarks, therefore we focus our numerical analysis on the medium-modifications of $g\to c \bar{c}$ splitting.arXiv:2209.15433oai:cds.cern.ch:28474642023
spellingShingle hep-ph
Particle Physics - Phenomenology
Park, Sohyun
Medium-modifications of $g\to c \bar{c}$ splitting
title Medium-modifications of $g\to c \bar{c}$ splitting
title_full Medium-modifications of $g\to c \bar{c}$ splitting
title_fullStr Medium-modifications of $g\to c \bar{c}$ splitting
title_full_unstemmed Medium-modifications of $g\to c \bar{c}$ splitting
title_short Medium-modifications of $g\to c \bar{c}$ splitting
title_sort medium-modifications of $g\to c \bar{c}$ splitting
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1051/epjconf/202327602018
http://cds.cern.ch/record/2847464
work_keys_str_mv AT parksohyun mediummodificationsofgtocbarcsplitting