Information theory approach (extensive and nonextensive) to high energy multiple production processes
arXiv:hep-ph/0312052 · doi:10.1016/j.physa.2004.04.042
Abstract
We present an overview of information theory approach (both in its extensive and nonextensive versions) applied to high energy multiparticle production processes. It will be illustrated by analysis of single particle distributions measured in proton-proton, proton-antiproton and nuclear collisions. We shall demonstrate the particular role played by the nonextensivity parameter q in such analysis as summarizing our knowledge on the fluctuations existed in hadronizing system.
Presented at NEXT2003 (Second Sardinian Conference on News and Expectations in Thermostatistics), Villasimius (Cagliari) Italy, 21-28 September 2003
References in corpus (7)
- Superstatistics
- Energy Dependence of Pion and Kaon Production in Central Pb+Pb Collisions
- Simple solutions of relativistic hydrodynamics for longitudinally and cylindrically expanding systems
- Estimating the inelasticity with the information theory approach
- Statistical hadronisation phenomenology
- An additive variant of Tsallis generalized entropy
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Cited by in corpus (12)
- Power laws in elementary and heavy-ion collisions - A story of fluctuations and nonextensivity?
- Nonextensive hydrodynamics for relativistic heavy-ion collisions
- Multiplicity fluctuations due to the temperature fluctuations in high-energy nuclear collisions
- Consequences of temperature fluctuations in observables measured in high energy collisions
- Fluctuations, correlations and the nonextensivity
- Non-monotonic behavior of multiplicity fluctuations
- The imprints of superstatistics in multiparticle production processes
- Extended Gaussian ensemble or q-statistics in hadronic production processes?
- Information theory in high energy physics (extensive and nonextensive approach)
- Information theoretic approach for accounting classification
- Multiparticle production processes from the Information Theory point of view
- Single particle spectra from information theory point of view