Publication | Open Access
Direct current heating in superconductor–insulator–superconductor tunnel devices for THz mixing applications
13
Citations
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References
1996
Year
Thz PhotonicsSuperconducting MaterialEngineeringBismuth-based SuperconductorsTunnel JunctionsTunneling MicroscopyNovel SuperconductorsSuperconductivityQuantum MaterialsAluminum LayersSuperconducting DevicesLow-temperature SuperconductivityElectrical EngineeringHigh-tc SuperconductivityPhysicsTerahertz NetworkThz Mixing ApplicationsSeveral KelvinHigh-temperature SuperconductivityApplied PhysicsCondensed Matter PhysicsDirect Current HeatingSuperconductor–insulator–superconductor Tunnel DevicesQuantum Superconductivity
DC heating effects in superconductor–insulator–superconductor (SIS) tunnel junctions are studied by comparing junctions sandwiched between niobium or aluminum layers. With niobium a temperature rise of several Kelvin is observed, which is reduced by an order of magnitude by using aluminum. A simple model satisfactorily explains this observation and predicts a 30% increase in the subgap current due to the elevated temperature. At the operating voltage for heterodyne mixing the receiver noise temperature increases by only 2%.
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