9 papers
The shape of transverse momentum spectra in hybrid hydrodynamic models
Thiago S. Domingues, Fernando G. Gardim, Cicero D. Muncinelli +8
We study the scaled transverse momentum spectra over a wide parameter space of state-of-the-art hydrodynamic simulation models in order to learn what information can be obtained fr…
Universality of scaled particle spectra in ultrarelativistic heavy-ion collisions
Cicero D. Muncinelli, Fernando G. Gardim, David D. Chinellato +7
We study the transverse momentum spectra of identified particles in ultrarelativistic collisions of large and small collision systems. In order to isolate information contained in…
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,…
Probing the onset of collectivity via scaled particle spectra in ultrarelativistic nuclear collisions
Thiago S. Domingues, Fernando G. Gardim, David D. Chinellato +8
We identify a novel scaling in the transverse momentum spectra of produced particles, obtained by removing the global scales of multiplicity and mean transverse momentum. Hydrodyna…
Nuclear Physics Confronts Relativistic Collisions Of Isobars
Giuliano Giacalone, Jiangyong Jia, Vittorio Somà +43
High-energy collisions involving the isobars Zr and Ru have been performed in 2018 at Brookhaven National Laboratory's Relativistic Heavy Ion Collider (RHIC) a…
Stars and quark stars in bumblebee gravity
Juliano C. S. Neves, Fernando G. Gardim
In this work, the interior spacetime of stars is built in a Lorentz symmetry breaking model called bumblebee gravity. Firstly, we calculated the modified Tolman-Oppenheimer-Volkoff…