Scale dependence of the q and T parameters of the Tsallis distribution in the process of jet fragmentation
arXiv:2303.12475 · doi:10.1140/epja/s10050-023-01041-4
Abstract
The dependence of the and parameters of the Tsallis-distribution-shaped fragmentation function (FF) on the fragmentation scale (found to be equal to the jet mass) is calculated via the resummation of the branching process of jet fragmentation in the leading-log appriximation (LLA) in the theory. Jet and hadron spectra in electron-positron () annihilations with 2- and 3-jet final states are calculated using virtual leading partons. It is found that jets, produced earlier in the branching process, are more energetic, and the energy, angle and multiplicity distributions of hadrons stemming from them are broader. It is also found that replacing the LL resummation in the branching process by a single splitting provides good approximation for the jet energy distribution in 2-jet events. Furthermore, a micro-canonical statistical event generator is presented for the event-by-event calculation of hadron momenta in annihilations.
References in corpus (22)
- Description of High-Energy pp Collisions Using Tsallis Thermodynamics: Transverse Momentum and Rapidity Distributions
- Hard-Soft-Collinear Factorization to All Orders
- Superstatistics in high energy physics: Application to cosmic ray energy spectra and e+e- annihilation
- Systematic analysis of pT -distributions in p + p collisions
- Systematic Analysis of the Non-extensive Statistical Approach in High Energy Particle Collisions - Experiment vs. Theory
- Microcanonical Jet-fragmentation in proton-proton collisions at LHC Energy
- An evidence of triple kinetic freezeout scenario observed in all centrality intervals in Cu-Cu, Au-Au and Pb-Pb collisions at high energies
- Quark matter revisited with non extensive MIT bag model
- Energy scan/dependence of kinetic freeze-out scenarios of multi-strange and other identified particles in central nucleus-nucleus collisions
- Power Law in Micro-Canonical Ensemble with Scaling Volume Fluctuations
- Spatially Hyperbolic Gravitating Sources in -Dominated Era
- Excitation Functions of Tsallis-like Parameters in High-Energy Nucleus-Nucleus Collisions
- Nonequilibrium kinetic freeze-out properties in relativistic heavy ion collisions from energies employed at the RHIC beam energy scan to those available at the LHC
- From the Boltzmann equation with non-local correlations to a standard non-linear Fokker-Planck equation
- Non-extensive statistical distributions of charmed meson production in Pb-Pb and pp() collisions
- Comparison of Tsallis statistics with the Tsallis-factorized statistics in the ultrarelativistic collisions
- A systematic analysis of transverse momentum spectra of mesons in high energy collisions
- Crust-core transition of a neutron star: effect of the temperature under strong magnetic fields
- An energy independent scaling of transverse momentum spectra of direct (prompt) photons from two-body processes in high-energy proton-proton collisions
- Temperature fluctuations and Tsallis statistics in Relativistic Heavy Ion collisions
- Statistical Behavior of Lepton Pair Spectrum in Drell-Yan Process and Signal from Quark-Gluon Plasma in High Energy Collisions
- Multiplicity Moments using Tsallis Statistics in High-Energy Hadron-Nucleus Interactions