Cargando…

Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile

Results from proton-proton ($pp$) collisions have routinely been used as a baseline to analyze and understand the production of QCD matter expected to be produced in nuclear collisions. But recent studies of small systems formed in $pp$ collisions at the LHC energies hint at the possibility of produ...

Descripción completa

Detalles Bibliográficos
Autores principales: Deb, Suman, Sarwar, Golam, Thakur, Dhananjaya, S., Pavish , Sahoo, Raghunath, Alam, Jan-e
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.397.0225
http://cds.cern.ch/record/2788681
_version_ 1780972141913571328
author Deb, Suman
Sarwar, Golam
Thakur, Dhananjaya
S., Pavish 
Sahoo, Raghunath
Alam, Jan-e
author_facet Deb, Suman
Sarwar, Golam
Thakur, Dhananjaya
S., Pavish 
Sahoo, Raghunath
Alam, Jan-e
author_sort Deb, Suman
collection CERN
description Results from proton-proton ($pp$) collisions have routinely been used as a baseline to analyze and understand the production of QCD matter expected to be produced in nuclear collisions. But recent studies of small systems formed in $pp$ collisions at the LHC energies hint at the possibility of producing medium with collective behavior. Therefore, results from $pp$ collisions required more careful investigation to understand whether QCD matter is produced in high multiplicity $pp$ collisions. With this motivation, the Glauber model traditionally used to study the heavy-ion collision dynamics at high energy is applied here to understand the dynamics of $pp$ collisions. We have used anisotropic and inhomogeneous quark/gluon-based proton density profile, a realistic picture obtained from deep inelastic scattering results and this model explains the charged particle multiplicity distribution of $pp$ collisions at LHC energies very well. Collision geometric properties like impact parameter and mean number of binary collisions ($\langle N_{coll} \rangle$), mean number of participants ($\langle N_{part} \rangle$) at different multiplicities are determined for $pp$ collisions. We further used these collision geometric properties to estimate average charged-particle pseudorapidity density ($\langle dN_{ch}/d\eta \rangle$) and found it to be comparable with the experimental results. Knowing $\langle N_{coll} \rangle$, we have obtained nuclear modification-like factor ($R_{pp}$) in $pp$ collisions which has not been done before to the best of our knowledge.
id cern-2788681
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27886812023-06-28T07:16:59Zdoi:10.22323/1.397.0225http://cds.cern.ch/record/2788681engDeb, SumanSarwar, GolamThakur, DhananjayaS., Pavish Sahoo, RaghunathAlam, Jan-eExtension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profilenucl-thNuclear Physics - Theorynucl-exNuclear Physics - Experimenthep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyResults from proton-proton ($pp$) collisions have routinely been used as a baseline to analyze and understand the production of QCD matter expected to be produced in nuclear collisions. But recent studies of small systems formed in $pp$ collisions at the LHC energies hint at the possibility of producing medium with collective behavior. Therefore, results from $pp$ collisions required more careful investigation to understand whether QCD matter is produced in high multiplicity $pp$ collisions. With this motivation, the Glauber model traditionally used to study the heavy-ion collision dynamics at high energy is applied here to understand the dynamics of $pp$ collisions. We have used anisotropic and inhomogeneous quark/gluon-based proton density profile, a realistic picture obtained from deep inelastic scattering results and this model explains the charged particle multiplicity distribution of $pp$ collisions at LHC energies very well. Collision geometric properties like impact parameter and mean number of binary collisions ($\langle N_{coll} \rangle$), mean number of participants ($\langle N_{part} \rangle$) at different multiplicities are determined for $pp$ collisions. We further used these collision geometric properties to estimate average charged-particle pseudorapidity density ($\langle dN_{ch}/d\eta \rangle$) and found it to be comparable with the experimental results. Knowing $\langle N_{coll} \rangle$, we have obtained nuclear modification-like factor ($R_{pp}$) in $pp$ collisions which has not been done before to the best of our knowledge.Results from proton-proton ($pp$) collisions have routinely been used as a baseline to analyze and understand the production of QCD matter expected to be produced in nuclear collisions. But recent studies of small systems formed in $pp$ collisions at the LHC energies hint at the possibility of producing medium with collective behavior. Therefore, results from $pp$ collisions required more careful investigation to understand whether QCD matter is produced in high multiplicity $pp$ collisions. With this motivation, the Glauber model traditionally used to study the heavy-ion collision dynamics at high energy is applied here to understand the dynamics of $pp$ collisions. We have used anisotropic and inhomogeneous quark/gluon-based proton density profile, a realistic picture obtained from deep inelastic scattering results and this model explains the charged particle multiplicity distribution of $pp$ collisions at LHC energies very well. Collision geometric properties like impact parameter and mean number of binary collisions ($\langle N_{coll} \rangle$), mean number of participants ($\langle N_{part} \rangle$) at different multiplicities are determined for $pp$ collisions. We further used these collision geometric properties to estimate average charged-particle pseudorapidity density ($\langle dN_{ch}/d\eta \rangle$) and found it to be comparable with the experimental results. Knowing $\langle N_{coll} \rangle$, we have obtained nuclear modification-like factor ($R_{pp}$) in $pp$ collisions which has not been done before to the best of our knowledge.arXiv:2110.03977oai:cds.cern.ch:27886812021-10-08
spellingShingle nucl-th
Nuclear Physics - Theory
nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Deb, Suman
Sarwar, Golam
Thakur, Dhananjaya
S., Pavish 
Sahoo, Raghunath
Alam, Jan-e
Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title_full Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title_fullStr Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title_full_unstemmed Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title_short Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile
title_sort extension of glauber-like model for proton-proton collisions using anisotropic and inhomogeneous density profile
topic nucl-th
Nuclear Physics - Theory
nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.22323/1.397.0225
http://cds.cern.ch/record/2788681
work_keys_str_mv AT debsuman extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile
AT sarwargolam extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile
AT thakurdhananjaya extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile
AT spavish extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile
AT sahooraghunath extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile
AT alamjane extensionofglauberlikemodelforprotonprotoncollisionsusinganisotropicandinhomogeneousdensityprofile