1 citations · 2 across the 2 of their papers we have counts for
10 papers
Modeling (anti)deuteron formation at RHIC with a geometric coalescence model
Apiwit Kittiratpattana, Michael Florian Wondrak, Medina Hamzic +3
We study (anti)deuteron formation rates in heavy-ion collisions in the framework of a wave-function based coalescence model. The main feature of our model is that nucleons are emit…
Early-Stage Shear Viscosity far from Equilibrium via Holography
Michael F. Wondrak, Matthias Kaminski, Marcus Bleicher
Shear viscosity is a crucial property of QCD matter which determines the collective behavior of the the quark-gluon plasma (QGP) in ultrarelativistic heavy-ion collisions. Extendin…
Deuteron and Antideuteron Coalescence in Heavy-Ion Collisions: Energy Dependence of the Formation Geometry
Apiwit Kittiratpattana, Michael Florian Wondrak, Medina Hamzic +3
We investigate the collision energy dependence of deuteron and antideuteron emission in the RHIC-BES low- to mid-energy range GeV where the formation rate…
Shear transport far from equilibrium via holography
Michael F. Wondrak, Matthias Kaminski, Marcus Bleicher
In heavy-ion collisions, the quark-gluon plasma is produced far from equilibrium. This regime is currently inaccessible by quantum chromodynamics (QCD) computations. We calculate s…
Constraints on the String T-Duality Propagator from the Hydrogen Atom
Michael F. Wondrak, Marcus Bleicher
We investigate the implications of a string-theory modified propagator in the high-precision regime of quantum mechanics. In particular, we examine the situation in which string th…
Quantum Corrected Black Holes from String T-Duality
Piero Nicolini, Euro Spallucci, Michael F. Wondrak
In this paper we present some stringy corrections to black hole spacetimes emerging from string T-duality. As a first step, we derive the static Newtonian potential by exploiting t…