We present here a theoretical method to determine the phononic contribution to the thermal conductance of nanoscale systems in the phase-coherent regime. Our approach makes use of classical molecular dynamics (MD) simulations to calculate the temperature-dependent dynamical matrix, and the phononic heat conductance is subsequently computed within the Landauer-B\"uttiker formalism with the help of nonequilibrium Green's function techniques. Tailored to nanostructures, crucial steps of force constant and heat transport calculations are performed directly in real space. As compared to conventional density functional theory (DFT) approaches, the advantage of our method is two-fold. First, interatomic interactions can be described with the metho...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Phonon transport across a non-polar nanowire situated between two semi-infinite contacts is simulate...
We present here a theoretical method to determine the phononic contribution to the thermal conductan...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
Motivated by recent experiments [Science 355, 1192 (2017); Nat. Nanotechnol. 12, 430 (2017)], we pre...
Thermal management in nanometer size scale devices is becoming a major challenge with the developmen...
We studied the phononic heat transfer through an atomic dielectric wire with both infinite and finit...
This thesis reports on the development and demonstration of a novel experimental technique to invest...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pl...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Phonon transport across a non-polar nanowire situated between two semi-infinite contacts is simulate...
We present here a theoretical method to determine the phononic contribution to the thermal conductan...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
Motivated by recent experiments [Science 355, 1192 (2017); Nat. Nanotechnol. 12, 430 (2017)], we pre...
Thermal management in nanometer size scale devices is becoming a major challenge with the developmen...
We studied the phononic heat transfer through an atomic dielectric wire with both infinite and finit...
This thesis reports on the development and demonstration of a novel experimental technique to invest...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pl...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Phonon transport across a non-polar nanowire situated between two semi-infinite contacts is simulate...