EPOS3 simulations of 200 GeV Au+Au collisions find no clear transverse-mass scaling of Lévy scale parameters across pions, kaons and protons, with proton power-law exponents higher than those for mesons.
A self-consistent calculation of non-spherical Bose-Einstein correlation functions with Coulomb final-state interaction
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abstract
Particle correlations and femtoscopy are a rich subfield of high-energy physics. As the experimental data become more precise, there is an increasing need for the theoretical calculations to provide better and more general descriptions of the measurements. One of the important new directions is the investigation of the precise shape of the Bose-Einstein correlation functions utilizing L\'evy-stable distributions. This work is a direct follow-up to our previous study, in which we developed a novel method for calculating Bose-Einstein correlation functions including the Coulomb final-state interaction. In this paper, we present a self-consistent generalization of the previous approach to non-spherical source functions and investigate the validity of the previously applied approximations assuming spherical symmetry. We present a software package that includes the calculation of a fully three-dimensional correlation function including the Coulomb interaction.
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hep-ph 1years
2026 1verdicts
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Particle species dependence of femtoscopic source parameters in high-energy nuclear collisions
EPOS3 simulations of 200 GeV Au+Au collisions find no clear transverse-mass scaling of Lévy scale parameters across pions, kaons and protons, with proton power-law exponents higher than those for mesons.