Publication | Closed Access
Efficient electronic cooling in heavily doped silicon by quasiparticle tunneling
45
Citations
17
References
2001
Year
Superconducting MaterialEngineeringBismuth-based SuperconductorsElectron–phonon CouplingSilicon On InsulatorSemiconductor DeviceSemiconductorsTunneling MicroscopyNovel SuperconductorsSuperconductivityQuantum MaterialsSuperconducting DevicesElectrical EngineeringHigh-tc SuperconductivityPhysicsThermal TransportSemiconductor MaterialHeat TransferLow TemperaturesHigh-temperature SuperconductivityEfficient Electronic CoolingApplied PhysicsCondensed Matter PhysicsSoi FilmThermal EngineeringQuantum Superconductivity
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.
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