Publication | Open Access
Electronic transport coefficients from<i>ab initio</i>simulations and application to dense liquid hydrogen
185
Citations
65
References
2011
Year
Quantum LiquidEngineeringComputational ChemistryChemistryDense Liquid HydrogenCharge TransportMolecular DynamicsThermal ConductivityLinear Response TheoryTransport PhenomenaThermodynamicsCharge Carrier TransportBiophysicsPhysicsThermal TransportPhysical ChemistryQuantum ChemistryHydrogenElectronic Transport CoefficientsAb-initio MethodNatural SciencesApplied PhysicsHydrogen-bonded LiquidLiquid Hydrogen
Using Kubo's linear response theory, we derive expressions for the frequency-dependent electrical conductivity (Kubo-Greenwood formula), thermopower, and thermal conductivity in a strongly correlated electron system. These are evaluated within ab initio molecular dynamics simulations in order to study the thermoelectric transport coefficients in dense liquid hydrogen, especially near the nonmetal-to-metal transition region. We also observe significant deviations from the widely used Wiedemann-Franz law, which is strictly valid only for degenerate systems, and give an estimate for its valid scope of application toward lower densities.
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