International audienceThe enhancement of thermal conductivity via surface electromagnetic waves (SEWs) supported in nanostructures has recently attracted attention as a remedy for issues raised due to the reduction of thermal conductivity in nanoscale confinement. Among them, multilayered structures on a substrate are prevalent in nanosized systems, such as electronic nanodevices, meaning that analysis on those structures is indispensable. In this work, three basic multilayered structures are selected and the analytical expressions for SEWs supported in each structure are derived. This analytical approach enables us to figure out which factors are crucial for enhancing SEW thermal conductivity using multilayers. It is also found that the so...
The absorption of the energy in the form of heat from electromagnetic radiation is strongly dependen...
ABSTRACT We model and compare the thermal conductivity of rough semiconductor nanowires (NWs) of Si,...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
International audienceThe enhancement of thermal conductivity via surface electromagnetic waves (SEW...
Abstract A comprehensive rational thermal material design paradigm requires the ability to reduce an...
The use of an asymmetric broadening in the transport distribution, a characteristic of resonant stru...
The ability to precisely control the thermal conductivity (κ) of a material is fundamental in the de...
The intrinsic ability of solid materials to conduct heat is called thermal conductivity (and here is...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
Nanomaterials have become crucial to develop new technologies in several practical applications fiel...
Feser, Joseph P.The design of efficient thermoelectric materials involves the reduction of thermal c...
Heterogeneous nanostructures involve nanoscale interfaces with different materials components, such ...
The design and fabrication of nanostructured materials to control both thermal and electrical proper...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
The absorption of the energy in the form of heat from electromagnetic radiation is strongly dependen...
ABSTRACT We model and compare the thermal conductivity of rough semiconductor nanowires (NWs) of Si,...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
International audienceThe enhancement of thermal conductivity via surface electromagnetic waves (SEW...
Abstract A comprehensive rational thermal material design paradigm requires the ability to reduce an...
The use of an asymmetric broadening in the transport distribution, a characteristic of resonant stru...
The ability to precisely control the thermal conductivity (κ) of a material is fundamental in the de...
The intrinsic ability of solid materials to conduct heat is called thermal conductivity (and here is...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
Nanomaterials have become crucial to develop new technologies in several practical applications fiel...
Feser, Joseph P.The design of efficient thermoelectric materials involves the reduction of thermal c...
Heterogeneous nanostructures involve nanoscale interfaces with different materials components, such ...
The design and fabrication of nanostructured materials to control both thermal and electrical proper...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
The absorption of the energy in the form of heat from electromagnetic radiation is strongly dependen...
ABSTRACT We model and compare the thermal conductivity of rough semiconductor nanowires (NWs) of Si,...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...