Thermal transport coefficients are independent of the specific microscopic expression for the energy density and current from which they can be derived through the Green-Kubo formula. We discuss this independence in terms of a kind of gauge invariance resulting from energy conservation and extensivity, and demonstrate it numerically for a Lennard-Jones fluid, where different forms of the microscopic energy density lead to different time correlation functions for the heat flux, all of them, however, resulting in the same value for the thermal conductivity
The evaluation of transport coefficients in extended systems, such as thermal conductivity or shear ...
Current research is probing transport on ever smaller scales. Modeling of the electromagnetic intera...
Explicit expressions are derived for thermal transport coefficients (heat conductivity, viscosities)...
In this work, we elaborate on two recently discovered invariance principles, according to which tran...
The authors report exhaustive calculations of the density and temperature dependences of the time ev...
International audienceIn this work, is presented an empirical correlation on the thermal conductivit...
The thermal conductivity of classical multicomponent fluids is seemingly affected by the intrinsic a...
We have used theoretical values of the sum rules in the information theory for the transport coeffic...
Abstract Uncharged relativistic fluids in 3+1 dimensions have three independent thermodynamic transp...
An equation for a moderately dense gas transport coefficient, derived in the preceding article from ...
We propose a method by which the generalized transport properties and coefficients at all wavelength...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Several thermal transport coefficients (shear and bulk viscosity and thermal conductivity) in simple...
We demonstrate the complete equivalence between the kinetic approach developed by Prigogine and co-w...
We present generalized Green-Kubo expressions for thermal transport coefficients μ in non-conservati...
The evaluation of transport coefficients in extended systems, such as thermal conductivity or shear ...
Current research is probing transport on ever smaller scales. Modeling of the electromagnetic intera...
Explicit expressions are derived for thermal transport coefficients (heat conductivity, viscosities)...
In this work, we elaborate on two recently discovered invariance principles, according to which tran...
The authors report exhaustive calculations of the density and temperature dependences of the time ev...
International audienceIn this work, is presented an empirical correlation on the thermal conductivit...
The thermal conductivity of classical multicomponent fluids is seemingly affected by the intrinsic a...
We have used theoretical values of the sum rules in the information theory for the transport coeffic...
Abstract Uncharged relativistic fluids in 3+1 dimensions have three independent thermodynamic transp...
An equation for a moderately dense gas transport coefficient, derived in the preceding article from ...
We propose a method by which the generalized transport properties and coefficients at all wavelength...
Quantum simulation methods based on electronic-structure theory are deemed unfit to cope with atomic...
Several thermal transport coefficients (shear and bulk viscosity and thermal conductivity) in simple...
We demonstrate the complete equivalence between the kinetic approach developed by Prigogine and co-w...
We present generalized Green-Kubo expressions for thermal transport coefficients μ in non-conservati...
The evaluation of transport coefficients in extended systems, such as thermal conductivity or shear ...
Current research is probing transport on ever smaller scales. Modeling of the electromagnetic intera...
Explicit expressions are derived for thermal transport coefficients (heat conductivity, viscosities)...