activity
20182022
most citedRapidity dependence of initial state geometry and momentum correlations in p+Pb collisions

30 citations · 30 across the 4 of their papers we have counts for

collaborators

8 papers

nucl-th202230 cited

Rapidity dependence of initial state geometry and momentum correlations in p+Pb collisions

Bjoern Schenke, Soeren Schlichting, Pragya Singh

Event geometry and initial state correlations have been invoked as possible explanations of long range azimuthal correlations observed in high multiplicity p+p and p+Pb collisions.…

nucl-th2021

Intermediate mass dileptons as pre-equilibrium probes in heavy ion collisions

Maurice Coquet, Xiaojian Du, Jean-Yves Ollitrault +2

The production of dileptons with an invariant mass in the range 1 GeV < M < 5 GeV provides unique insight into the approach to thermal equilibrium in ultrarelativistic nucleus-nucl…

hep-ph2020

Spectral functions from the real-time functional renormalization group

Sven Huelsmann, Soeren Schlichting, Philipp Scior

We employ the functional renormalization group approach formulated on the Schwinger-Keldysh contour to calculate real-time correlation functions in scalar field theories. We provid…

hep-ph2020

Energy loss and equilibration of jets in a QCD plasma

Soeren Schlichting, Ismail Soudi

We investigate the medium induced fragmentation of jets in a high-temperature QCD plasma. Based on an effective kinetic theory of QCD, we study the non-equilibrium evolution of the…

nucl-th2019

The First fm/c of Heavy-Ion Collisions

Soeren Schlichting, Derek Teaney

We present an introductory review of the early time dynamics of high-energy heavy-ion collisions and the kinetics of high temperature QCD. The equilibration mechanisms in the quark…

hep-ph2018

Jet fragmentation in a QCD medium: Universal quark/gluon ration and Wave turbulence

Y. Mehtar-Tani, S. Schlichting

We calculate the evolution of a jet shower due to medium induced splittings in the deep LPM regime. Due to the characteristic energy dependence of the formation time $t_{\rm form}(…