Cooling of electrons in a heavily doped silicon by quasiparticle tunneling using a superconductor–semiconductor–superconductor double-Schottky-junction structure is demonstrated at low temperatures. In this work, we use Al as the superconductor and thin silicon-on-insulator (SOI) film as the semiconductor. The electron–phonon coupling is measured for the SOI film and the low value of the coupling is shown to be the origin of the observed significant cooling effect
Electronic cooling in superconductor–semiconductor–superconductor structures at sub kelvin temperatu...
We present simulations of quasiparticle creation, propagation, and loss in the superconducting elect...
Interacting oscillations of the current, lattice temperature, and concentration of thermally generat...
The influence of carrier concentration in silicon-on-insulator film on the thermal characteristics o...
This chapter presents an introduction to superconductor-semiconductor (S-Sm) tunnel junction coolers...
This chapter presents an introduction to superconductor-semiconductor (S-Sm) tunnel junction coolers...
Enhanced electron cooling is demonstrated in a strained-silicon/superconductor tunnel junction refri...
Energy flow rate in degenerate n-type silicon-on-insulator (SOI) film is studied at low temperatures...
We demonstrate electron cooling in silicon using platinum silicide as a superconductor contact to se...
A silicon-superconductor tunnel junction is capable of cooling electrons from a temperature of 300 ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
A silicon-superconductor tunnel junction is capable of cooling electrons from a temperature of 300 m...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
Evaporation of hot electrons from a normal-metal into a superconductor can be used for efficient Pel...
VK: Low Temperature LaboratoryThe control of electronic and thermal transport through material inter...
Electronic cooling in superconductor–semiconductor–superconductor structures at sub kelvin temperatu...
We present simulations of quasiparticle creation, propagation, and loss in the superconducting elect...
Interacting oscillations of the current, lattice temperature, and concentration of thermally generat...
The influence of carrier concentration in silicon-on-insulator film on the thermal characteristics o...
This chapter presents an introduction to superconductor-semiconductor (S-Sm) tunnel junction coolers...
This chapter presents an introduction to superconductor-semiconductor (S-Sm) tunnel junction coolers...
Enhanced electron cooling is demonstrated in a strained-silicon/superconductor tunnel junction refri...
Energy flow rate in degenerate n-type silicon-on-insulator (SOI) film is studied at low temperatures...
We demonstrate electron cooling in silicon using platinum silicide as a superconductor contact to se...
A silicon-superconductor tunnel junction is capable of cooling electrons from a temperature of 300 ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
A silicon-superconductor tunnel junction is capable of cooling electrons from a temperature of 300 m...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
Evaporation of hot electrons from a normal-metal into a superconductor can be used for efficient Pel...
VK: Low Temperature LaboratoryThe control of electronic and thermal transport through material inter...
Electronic cooling in superconductor–semiconductor–superconductor structures at sub kelvin temperatu...
We present simulations of quasiparticle creation, propagation, and loss in the superconducting elect...
Interacting oscillations of the current, lattice temperature, and concentration of thermally generat...