A calculation of baryon diffusion constant in hot and dense hadronic matter based on an event generator URASiMA
Creators
- 1. Department of Physics, Hiroshima Univ., Higashi-Hiroshima, Hiroshima (Japan)
- 2. Tokuyama Women's College, Tokuyama, Yamaguchi (Japan)
Description
We evaluate thermodynamical quantities and transport coefficient of a dense and hot hadronic matter based on an event generator URASiMA (Ultra-Relativistic AA collision Simulator based on Multiple Scattering Algorithm). The statistical ensembles in equilibrium with fixed temperature and chemical potential are generated by imposing periodic boundary condition to the simulation of URASiMA, where energy density and baryon number density is conserved. Achievement of the thermal equilibrium and the chemical equilibrium are confirmed by the common value of slope parameter in the energy distributions and the saturation of the numbers of contained particles, respectively. By using the generated ensembles, we investigate the temperature dependence and the chemical potential dependence of the baryon diffusion constant of a dense and hot hadronic matter. (author)
Files
32019372.pdf
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Additional details
Publishing Information
- Imprint Title
- Proceedings of the second symposium on science of hadrons under extreme conditions
- Imprint Pagination
- 158 p.
- Journal Page Range
- p. 3-7
- Report number
- JAERI-Conf--2000-011
Conference
- Title
- 2. symposium on science of hadrons under extreme conditions
- Dates
- 24-26 Jan 2000
- Place
- Tokai, Ibaraki (Japan)
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 32019372
- Subject category
- S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- BARYON NUMBER; COSMOLOGY; DIFFUSION; HADRON REACTIONS; HADRON-HADRON INTERACTIONS; NUCLEAR MATTER; NUCLEAR STRUCTURE; QUARK MATTER; SIMULATORS; TEMPERATURE DEPENDENCE; THERMODYNAMIC PROPERTIES; UNIVERSE
- Descriptors DEC
- ANALOG SYSTEMS; FUNCTIONAL MODELS; INTERACTIONS; MATTER; NUCLEAR REACTIONS; PARTICLE INTERACTIONS; PHYSICAL PROPERTIES
Optional Information
- Notes
- 14 refs., 5 figs.