Analyses of whole transverse momentum distributions in and collisions by using a modified version of Hagedorn's formula
arXiv:1604.01264 · doi:10.1142/S0217751X17500579
Abstract
To describe the transverse distribution of charged hadrons at 1.96 TeV observed by the CDF collaboration, we propose a formula with two component, namely, hadron gas distributions and inverse power laws. The data collected at 0.9, 2.76, 7, and 13 TeV by the ALICE, CMS, and ATLAS collaborations are also analyzed using various models including single component models as well as two component models. The results by using modified version of Hagedorn's formula are compared with those by using the two component model proposed by Bylinkin, Rostovtsev and Ryskin (BRR). Moreover, we show that there is an interesting interrelation among our the modified version of Hagedorn's formula, a formula proposed by ATLAS collaboration, and the BRR formula.
References in corpus (5)
- From QCD-based hard-scattering to nonextensive statistical mechanical descriptions of transverse momentum spectra in high-energy and collisions
- Description of High-Energy pp Collisions Using Tsallis Thermodynamics: Transverse Momentum and Rapidity Distributions
- Modified Hagedorn formula including temperature fluctuation - Estimation of temperatures at RHIC experiments -
- Secondary hadron distributions in two component model
- Comparison of Tsallis statistics with the Tsallis-factorized statistics in the ultrarelativistic collisions
Cited by in corpus (24)
- Kinetic freeze-out temperatures in central and peripheral collisions: Which one is larger?
- An evidence of triple kinetic freezeout scenario observed in all centrality intervals in Cu-Cu, Au-Au and Pb-Pb collisions at high energies
- Initial, effective, and kinetic freeze-out temperatures from transverse momentum spectra in high energy proton(deuteron)-nucleus and nucleus-nucleus collisions
- Energy scan/dependence of kinetic freeze-out scenarios of multi-strange and other identified particles in central nucleus-nucleus collisions
- Examining the model dependence of the determination of kinetic freeze-out temperature and transverse flow velocity in small collision system
- Effective (kinetic freeze-out) temperature, transverse flow velocity and kinetic freeze-out volume in high energy collisions
- Effects of coalescence and isospin symmetry on the freezeout of light nuclei and their anti-particles
- Centrality dependence of kinetic freeze-out temperature and transverse flow velocity in high energy nuclear collisions
- Possible scenarios for single, double, or multiple kinetic freeze-out in high energy collisions
- Extraction of different temperatures and kinetic freeze-out volume in high energy collisions
- Study of Dependence of Kinetic Freezeout Temperature on the Production Cross Section of Particles in Various Centrality Intervals in Au Au and Pb Pb Collisions at High Energies
- Kinetic freeze-out properties from transverse momentum spectra of pions in high energy proton-proton collisions
- Energy dependent kinetic freeze-out temperature and transverse flow velocity in high energy collisions
- Comparing standard distribution and its Tsallis form of transverse momenta in high energy collisions
- Dependence of temperatures and kinetic freeze-out volume on centrality in Au-Au and Pb-Pb collisions at high energy
- A new description of transverse momentum spectra of identified particles produced in proton-proton collisions at high energies
- An analysis of transverse momentum spectra of various jets produced in high energy collisions
- An energy independent scaling of transverse momentum spectra of direct (prompt) photons from two-body processes in high-energy proton-proton collisions
- Particle species and energy dependencies of freeze-out parameters in high-energy proton-proton collisions
- Event patterns extracted from anisotropic spectra of charged particles produced in Pb-Pb collisions at 2.76 TeV
- Analyzing the Correlation Between Thermal and Kinematic Parameters in Various Multiplicity Classes within 7 and 13 TeV pp Collisions
- The theoretical description of the transverse momentum spectra: a unified model
- Event patterns from negative pion spectra in proton-proton and nucleus-nucleus collisions at SPS
- Event patterns extracted from top quark-related spectra in proton-proton collisions at 8 TeV