Understanding thermal transport in nanoscale systems presents important challenges to both theory and experiment. In particular, the concept of local temperature at the nanoscale appears difficult to justify. Here, we propose a theoretical approach where we replace the temperature gradient with controllable external blackbody radiations. The theory recovers known physical results, for example, the linear relation between the thermal current and the temperature difference of two blackbodies. Furthermore, our theory is not limited to the linear regime and goes beyond accounting for nonlinear effects and transient phenomena. Since the present theory is general and can be adapted to describe both electron and phonon dynamics, it provides a firs...
The objective of this work is to study thermal transport in bulk, nano-structured, and two-dimension...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
To evaluate the phonon thermal transport at the nanoscale of nanotubes and nanowires we can use Bolt...
Understanding thermal transport in nanoscale systems presents important challenges to both theory an...
A thesis submitted in partial fulfillment for the degree of Doctor of Philosophy in the Faculty of P...
Phonons play a major role for the performance of nanoscale devices and consequently a detailed under...
Understanding thermal transport from nanoscale heat sources is important for a fundamental descripti...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
These lecture notes provide a detailed treatment of the thermal energy storage and transport by cond...
Within the exact framework established recently, which is a successful marriage between the time de...
We investigate the time-resolved quantum transport properties of phonons in arbitrary harmonic syste...
Huge development in the synthesis and processing of materials with nanostructures on nanometer lengt...
This book presents generalized heat-conduction laws which, from a mesoscopic perspective, are releva...
Rapid progress has been made in the manufacture of microelectronic and thermoelectric devices. With ...
The interaction of radiation with matter at the nanoscale has an inexhaustible range of applications...
The objective of this work is to study thermal transport in bulk, nano-structured, and two-dimension...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
To evaluate the phonon thermal transport at the nanoscale of nanotubes and nanowires we can use Bolt...
Understanding thermal transport in nanoscale systems presents important challenges to both theory an...
A thesis submitted in partial fulfillment for the degree of Doctor of Philosophy in the Faculty of P...
Phonons play a major role for the performance of nanoscale devices and consequently a detailed under...
Understanding thermal transport from nanoscale heat sources is important for a fundamental descripti...
Nanoscale heat transport has become a crucial research topic due to the growing importance of nanote...
These lecture notes provide a detailed treatment of the thermal energy storage and transport by cond...
Within the exact framework established recently, which is a successful marriage between the time de...
We investigate the time-resolved quantum transport properties of phonons in arbitrary harmonic syste...
Huge development in the synthesis and processing of materials with nanostructures on nanometer lengt...
This book presents generalized heat-conduction laws which, from a mesoscopic perspective, are releva...
Rapid progress has been made in the manufacture of microelectronic and thermoelectric devices. With ...
The interaction of radiation with matter at the nanoscale has an inexhaustible range of applications...
The objective of this work is to study thermal transport in bulk, nano-structured, and two-dimension...
Nano-size confinement induces many intriguing non-Fourier heat conduction phenomena, such as nonline...
To evaluate the phonon thermal transport at the nanoscale of nanotubes and nanowires we can use Bolt...