1 citations · 1 across the 8 of their papers we have counts for
8 papers
Studying the QCD Matter produced in Heavy-Ion Collisions using the MUSES Calculation Engine
Johannes Jahan, Kevin P. Pala, Yumu Yang +42
The equation of state of hot and dense matter is essential for describing heavy-ion collisions at all collision energies. Here, we explore the capabilities of the latest version of…
NuclearConfectionery: Multi-stage Simulation Framework for Modeling Relativistic Heavy-ion Collisions
Kevin P. Pala, Surkhab Kaur Virk, Dekrayat Almaalol +9
We present the NuclearConfectionery, a modular framework for simulating the full dynamical evolution of relativistic heavy-ion collisions. Its core hydrodynamic module, CCAKE 2.0,…
Viscous Gubser flow with conserved charges to benchmark fluid simulations
Kevin Ingles, Jordi Salinas San Martín, Willian Serenone +1
We present semi-analytical solutions for the evolution of both the temperature and chemical potentials for viscous Gubser flow with conserved charges. Such a solution can be especi…
RHIC GeV hadron yields and the isospin dependent equation of state
Feyisola Nana, Jordi Salinas San Martín, Jacquelyn Noronha-Hostler
The statistical hadronization model has been successful in extracting information at chemical freeze-out in heavy-ion collisions. At RHIC, with a collision energy of $\sqrt{s_{NN}}…
Unlocking "imprints" of conserved charges in the initial state of heavy-ion collisions
Fernando G. Gardim, Dekrayat Almaalol, Jordi Salinas San Martín +2
Hydrodynamic approaches to modeling relativistic high-energy heavy-ion collisions are based on the conservation of energy and momentum. However, the medium formed in these collisio…
BSQ Conserved Charges in Relativistic Viscous Hydrodynamics solved with Smoothed Particle Hydrodynamics
Christopher Plumberg, Dekrayat Almaalol, Travis Dore +8
Conservation laws play a crucial role in the modeling of heavy-ion collisions, including the those for charges such as baryon number (B), strangeness (S), and electric charge (Q).…