We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowires under tensile stress. Local heating results in systematic variation of the resonant frequency; these frequency changes result from thermal stresses that depend on temperature dependent thermal conductivity and expansion coefficient. The change in sign of the linear expansion coefficient of InAs is reflected in the resonant response of the system near a bath temperature of 20 K. Using finite element simulations to model the experimentally observed frequency shifts, we show that the thermal conductivity of a nanowire can be approximated in the 10-60 K temperature range by the empirical form κ = bT W/mK, where the value of b for a nanowire w...
The nanoscale heat dissipation (Joule heating) and mass transport during electromigration (EM) have ...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowi...
We measure the thermal conductivity (κ) of individual InAs nanowires (NWs), and find that it is thre...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
We utilize classical molecular dynamics to study energy dissipation (the Q factors) of doubly clampe...
Thermal conductivity a b s t r a c t We report here the effect of thermal annealing on the thermal c...
Managing heat transport at nanoscale is an important and challenging task for nanodevice application...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
We study the effect of Joule heating from electric currents flowing through ferromagnetic nanowires ...
As electronic devices are downsized, physical processes at the interface to electrodes may dominate ...
Reducing the thermal conductivity of nanowires may enhance their already exciting efficiency of ther...
The nanoscale heat dissipation (Joule heating) and mass transport during electromigration (EM) have ...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowi...
We measure the thermal conductivity (κ) of individual InAs nanowires (NWs), and find that it is thre...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
We utilize classical molecular dynamics to study energy dissipation (the Q factors) of doubly clampe...
Thermal conductivity a b s t r a c t We report here the effect of thermal annealing on the thermal c...
Managing heat transport at nanoscale is an important and challenging task for nanodevice application...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
We study the effect of Joule heating from electric currents flowing through ferromagnetic nanowires ...
As electronic devices are downsized, physical processes at the interface to electrodes may dominate ...
Reducing the thermal conductivity of nanowires may enhance their already exciting efficiency of ther...
The nanoscale heat dissipation (Joule heating) and mass transport during electromigration (EM) have ...
Most materials expand upon heating because the coefficient of thermal expansion (CTE), the fundament...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...