IEEE Transactions on Microwave Theory and Techniques · 2004 · 38 citations · 13 references
Thz PhotonicsAstronomical ObservationsTerahertz TechnologyAtmospheric WindowsEngineeringPhysicsHot-electron-bolometer Mixer ReceiverSuperconductivityApplied PhysicsTerahertz NetworkTerahertz ScienceTerahertz TechniqueCosmic RayInstrumentationNorthern ChileObservational CosmologyTerahertz PhotonicsSubmillimeter Wave Technology
In this paper, we describe a superconducting hot-electron-bolometer mixer receiver developed to operate in atmospheric windows between 800-1300 GHz. The receiver uses a waveguide mixer element made of 3-4-nm-thick NbN film deposited over crystalline quartz. This mixer yields double-sideband receiver noise temperatures of 1000 K at around 1.0 THz, and 1600 K at 1.26 THz, at an IF of 3.0 GHz. The receiver was successfully tested in the laboratory using a gas cell as a spectral line test source. It is now in use on the Smithsonian Astrophysical Observatory terahertz test telescope in northern Chile.
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1.6 THz heterodyne receiver for the far infrared space telescope
Serguei Cherednichenko, M. Kroug, H. Merkel et al. · Physica C Superconductivity · 2002 · 66 citations
An imaging beam waveguide feed
Ta‐Shing Chu · IRE Transactions on Antennas and Propagation · 1983 · 60 citations
Photonics, Fresnel Zone, Side Cab +12