A unified formalism to study the pseudorapidity spectra in heavy-ion collision
arXiv:2103.14547 · doi:10.1140/epja/s10050-021-00529-1
Abstract
The pseudorapidity distribution of charged hadron over a wide range gives us crucial information about the dynamics of particle production. Constraint on the detector acceptance, particularly at forward rapidities, demands a proper distribution function to extrapolate the pseudorapidity distribution to large . In this work, we have proposed a phenomenological model based on Pearson statistical framework to study the pseudorapidity distribution. We have analyzed and fit data of charged hadrons produced in collision at TeV and collision at TeV using the proposed model.
References in corpus (4)
- Description of High-Energy pp Collisions Using Tsallis Thermodynamics: Transverse Momentum and Rapidity Distributions
- Chemical Equilibrium in Heavy Ion Collisions: Rapidity Dependence
- Particle production in relativistic () and collisions at RHIC and LHC energies with Tsallis statistics using the two-cylindrical multisource thermal model
- Description of Charged Particle Pseudorapidity Distributions in Pb+Pb Collisions with Tsallis Thermodynamics