An advanced nonequilibrium thermodynamic model for electron and phonon transport is formulated based on the steepest-entropy-ascent quantum thermodynamics framework. This framework, based on the principle of steepest entropy ascent (or the equivalent maximum entropy production principle), inherently satisfies the laws of thermodynamics and mechanics and is applicable at all temporal and spatial scales even in the far-from-equilibrium realm. Specifically, the model is proven to recover the Boltzmann transport equations in the near-equilibrium limit and the two-temperature model of electron-phonon coupling when no dispersion is assumed. The heat and mass transport at a temperature discontinuity across a homogeneous interface where the dispers...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
Steepest-entropy-ascent quantum thermodynamics (SEAQT) is a novel non-equilibrium firstprinciples th...
This paper presents a nonequilibrium, first-principles, thermodynamic-ensemble-based model for the r...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
Conventional first-principle approaches for studying nonequilibrium processes depend on the mechani...
By suitable reformulations, we cast the mathematical frameworks of several well-known different appr...
The current state of the art for determining thermoelectric properties is limited to the investigati...
This paper presents a nonequilibrium thermodynamic model for the relaxation of a local, isolated sys...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
The search for generalized heat transport equations describing Fourier’s diffusive regime is a...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
Steepest-entropy-ascent quantum thermodynamics (SEAQT) is a novel non-equilibrium firstprinciples th...
This paper presents a nonequilibrium, first-principles, thermodynamic-ensemble-based model for the r...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
Conventional first-principle approaches for studying nonequilibrium processes depend on the mechani...
By suitable reformulations, we cast the mathematical frameworks of several well-known different appr...
The current state of the art for determining thermoelectric properties is limited to the investigati...
This paper presents a nonequilibrium thermodynamic model for the relaxation of a local, isolated sys...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
The search for generalized heat transport equations describing Fourier’s diffusive regime is a...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
We propose a theoretical model to study heat transfer at the nanoscale by means of high-order thermo...
Steepest-entropy-ascent quantum thermodynamics (SEAQT) is a novel non-equilibrium firstprinciples th...