collaborators

9 papers

nucl-th2026

Thermodynamically Consistent Merging of Multidimensional QCD Equations of State

Prachi Garella, Yumu Yang, Musa R. Khan +7

We present a thermodynamically consistent framework for merging complementary models into a multidimensional QCD equation of state. An internal mixing variable is determined by min…

nucl-th2026

Toward a Unified Understanding of the Dense Matter Equation of State

Kshitij Agarwal, Johannes Jahan, Behruz Kardan +3

Efforts to understand the equation of state (EOS) of dense nuclear matter at supra-saturation densities have grown more sophisticated over the past decade, driven by a surge in hig…

nucl-th2026

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…

hep-ph2026

Partial Pressure Contributions of Hadron Families to the QCD Equation of State

Jonathan Gonzales, Alejandro Florez, Johannes Jahan +3

Lattice simulations provide the thermodynamics of quantum chromodynamics (QCD) as a function of the temperature, at zero-to-moderate values of the baryonic chemical potential. Howe…

nucl-th2026

Merging multidimensional equations of state of strongly interacting matter via a statistical mixture

Yumu Yang, Prachi Garella, Musa R. Khan +7

We introduce a general method to merge multidimensional equations of state (EoSs) by combining them in a two-fluid equilibrium statistical mixture in the grand canonical ensemble.…

nucl-th2025

Relativistic mean-field model with density- and isospin-density-dependent couplings

Gabriel Frohaug, Konstantin Maslov, Veronica Dexheimer +4

We present a new hadronic EoS with hyperons built within the relativistic mean-field (RMF) formalism with baryon-density- and isospin-density-dependent couplings. Motivated by micr…