Article ID Journal Published Year Pages File Type
1835727 Nuclear Physics A 2016 13 Pages PDF
Abstract

The mTmT-dependencies of the femto-scales, the so-called interferometry and source radii, are investigated within the hydrokinetic model for different types of particle pairs — pion–pion, kaon–kaon, proton–proton and proton–lambda, — produced in Pb+Pb and p+pp+p collisions at the LHC. In particular, such property of the femto-scales momentum behavior as mTmT-scaling is studied for the systems with (w) and without (w/o) intensive transverse flow, and also w and w/o re-scattering at the final afterburner stage of the matter evolution. The detailed spatiotemporal description obtained within hydrokinetic model is compared with the simple analytical results for the spectra and longitudinal interferometry radii depending on the effective temperature on the hypersurface of maximal emission, proper time of such emission, and intensity of transverse flow. The derivation of the corresponding analytical formulas and discussion about a possibility for their utilization by the experimentalists for the simple femtoscopy data analysis is the main aim of this theoretical investigation.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Nuclear and High Energy Physics
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