The PYTHIA8/ANGANTYR model for heavy ion collisions was recently updated with a mechanism for \textit{global colour reconnection}. The colour reconnection model used is QCD colour algebra inspired and enhances baryon production due to the formation of string junctions. In this paper, we present updates to the junction formation and string fragmentation mechanisms, connected to heavy quark fragmentation. This allows for the simulation of heavy quark fragmentation, using junction formation, in heavy ion collisions. The framework is validated for proton collisions, and we show results for charm baryon production in proton-lead collisions.Comment: 20 pages, 10 figure
Color screening and parton inelastic scattering modify the heavy-quark antiquark potential in the me...
We present a new model for the description of heavy-quark hadronization in relativistic heavy-ion co...
The measurements of the charmed baryons are fundamental to investigate charm-quark production and ha...
We present a new model for the description of heavy-flavor hadronization in high-energy nuclear (and...
We study the enhanced production of $\Lambda_c$ charmed baryons relative to that of charmed $D^0$ me...
We present an extension to the colour reconnection model in the Monte Carlo event generator Herwig t...
Beauty and charm quarks are ideal probes of pertubative Quantum Chromodymanics in proton–proton coll...
We study the $\Bc$ production in Pb-Pb collisions at $\sqrt{s_{NN}}=5.02$ TeV. In the quark-gluon pl...
A brief overview of properties of the model of quantized fragmentation of a helical QCD string is fo...
We study the enhanced production of charmed baryons relative to charmed mesons in proton--proton col...
The production of $J/\psi$ mesons in heavy-ion collisions at the Large Hadron Collider is believed t...
Recent measurements of prompt charm-baryon production at midrapidity in pp and p--Pb collisions show...
The work presented in this dissertation is dedicated to production measurements of open charm hadron...
International audienceWe study charm production in ultra-relativistic heavy-ion collisions by using ...
In high-energy hadronic collisions, hard parton scatterings with large momentum transfers are prereq...
Color screening and parton inelastic scattering modify the heavy-quark antiquark potential in the me...
We present a new model for the description of heavy-quark hadronization in relativistic heavy-ion co...
The measurements of the charmed baryons are fundamental to investigate charm-quark production and ha...
We present a new model for the description of heavy-flavor hadronization in high-energy nuclear (and...
We study the enhanced production of $\Lambda_c$ charmed baryons relative to that of charmed $D^0$ me...
We present an extension to the colour reconnection model in the Monte Carlo event generator Herwig t...
Beauty and charm quarks are ideal probes of pertubative Quantum Chromodymanics in proton–proton coll...
We study the $\Bc$ production in Pb-Pb collisions at $\sqrt{s_{NN}}=5.02$ TeV. In the quark-gluon pl...
A brief overview of properties of the model of quantized fragmentation of a helical QCD string is fo...
We study the enhanced production of charmed baryons relative to charmed mesons in proton--proton col...
The production of $J/\psi$ mesons in heavy-ion collisions at the Large Hadron Collider is believed t...
Recent measurements of prompt charm-baryon production at midrapidity in pp and p--Pb collisions show...
The work presented in this dissertation is dedicated to production measurements of open charm hadron...
International audienceWe study charm production in ultra-relativistic heavy-ion collisions by using ...
In high-energy hadronic collisions, hard parton scatterings with large momentum transfers are prereq...
Color screening and parton inelastic scattering modify the heavy-quark antiquark potential in the me...
We present a new model for the description of heavy-quark hadronization in relativistic heavy-ion co...
The measurements of the charmed baryons are fundamental to investigate charm-quark production and ha...