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- W2937294097 abstract "Transport coefficients serve as important probes in characterizing the QCD matter created in high-energy heavy-ion collisions. Thermal and electrical conductivities as transport coefficients have special significance in studying the time evolution of the created matter. We have adopted a color string percolation approach for the estimation of thermal conductivity ($ensuremath{kappa}$), electrical conductivity (${ensuremath{sigma}}_{mathrm{el}}$), and their ratio, which is popularly known as the Wiedemann-Franz law in condensed matter physics. The ratio $ensuremath{kappa}/{ensuremath{sigma}}_{mathrm{el}}T$, which is also known as the Lorenz number ($mathbb{L}$), is studied as a function of temperature and is compared with various theoretical calculations. We observe that the thermal conductivity for a hot QCD medium is almost temperature independent in the present formalism and matches with the results obtained in an ideal equation of state for quark-gluon plasma with a fixed coupling constant (${ensuremath{alpha}}_{s}$). The obtained Lorenz number is compared with the Stefan-Boltzmann limit for an ideal gas. We observe that a hot QCD medium with color degrees of freedom behaves like a free electron gas." @default.
- W2937294097 created "2019-04-25" @default.
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- W2937294097 date "2019-09-17" @default.
- W2937294097 modified "2023-10-16" @default.
- W2937294097 title "Wiedemann-Franz law for hot QCD matter in a color string percolation scenario" @default.
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- W2937294097 doi "https://doi.org/10.1103/physrevd.100.051503" @default.
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