Nonisothermal electron transport in thin barrier heterostructures is investigated using Monte Carlo techniques. Particular attention is paid to the energy balance in thermionic emission, and the Joule heating in the barrier region. By introducing an energy relaxation length, an equation for the temperature distribution inside the device is derived. Conditions for creating a steady-state temperature gradient and for integrated cooling of electronic components are examined
International audienceWe investigate electron transport in asymmetric double-barrier (Al, Ga)As/GaAs...
Solid state coolers based on 111-V material can be monolithically integrated with optoelectronic and...
The dissertation covers two research topics: optimization of thermoelectric devices for hotspot micr...
Thermionic emission in heterostructures is investigated for integrated cooling of high power electro...
A self-consistent Ensemble Monte Carlo (EMC) model was developed to simulate the thermionic effect i...
At this age of technologically advanced world, the electronic devices are getting more and more dens...
xvii, 189 p. : ill. (some col.)Low-dimensional electronic systems, systems that are restricted to si...
International audienceRapid progress in high-speed, densely packed electronic/photonic devices has b...
This thesis investigates thermoelectric effects, predominantly in low-dimensional semiconductors. Va...
Electronic cooling in Superconductor - Insulator - Normal metal (S-I-N) junction is based on the ene...
Nontraditional approach to explain the thermoelectric cooling is suggested . It is based on the Le C...
Over the past few years, MEMS and smart material technologies improvements have allowed autonomous s...
In the recent years, nano-refrigeration using electron tunneling in hybrid Normal metal - Insulator ...
The material figure-of-merit for conventional thermoelectrics is µ meff1.5/β where µ is the electron...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
International audienceWe investigate electron transport in asymmetric double-barrier (Al, Ga)As/GaAs...
Solid state coolers based on 111-V material can be monolithically integrated with optoelectronic and...
The dissertation covers two research topics: optimization of thermoelectric devices for hotspot micr...
Thermionic emission in heterostructures is investigated for integrated cooling of high power electro...
A self-consistent Ensemble Monte Carlo (EMC) model was developed to simulate the thermionic effect i...
At this age of technologically advanced world, the electronic devices are getting more and more dens...
xvii, 189 p. : ill. (some col.)Low-dimensional electronic systems, systems that are restricted to si...
International audienceRapid progress in high-speed, densely packed electronic/photonic devices has b...
This thesis investigates thermoelectric effects, predominantly in low-dimensional semiconductors. Va...
Electronic cooling in Superconductor - Insulator - Normal metal (S-I-N) junction is based on the ene...
Nontraditional approach to explain the thermoelectric cooling is suggested . It is based on the Le C...
Over the past few years, MEMS and smart material technologies improvements have allowed autonomous s...
In the recent years, nano-refrigeration using electron tunneling in hybrid Normal metal - Insulator ...
The material figure-of-merit for conventional thermoelectrics is µ meff1.5/β where µ is the electron...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
International audienceWe investigate electron transport in asymmetric double-barrier (Al, Ga)As/GaAs...
Solid state coolers based on 111-V material can be monolithically integrated with optoelectronic and...
The dissertation covers two research topics: optimization of thermoelectric devices for hotspot micr...