The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tunnel junctions were measured in the 400-500-GHz frequency range. Three different arrays of two junctions in series are analyzed. The minimum receiver noise temperature is 120 K DSB at 480 GHz, measured with an array having integrated tuning stubs. The authors compare data of the pumped I-V curves with the Werthammer-Tucker theory and demonstrate an excellent agreement at frequencies up to 500 GHz. For an array without integrated tuning stubs. a mixer noise temperature of 90+or-30 K and a DSB mixer gain of -12.5+or-0.6 dB were measured. A comparison of the measured gain versus bias voltage with the quantum theory of mixing shows good qualitativ...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
Predictions of the three-port model of the quantum theory of mixing are compared with measured resul...
There are great interests in developing Nb SIS mixers because of the extremely low noise temperature...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
We report recent results on a 580-740 GHz SIS heterodyne receiver employing a tuned 0.50m Nb/AlO ...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
Predictions of the three-port model of the quantum theory of mixing are compared with measured resul...
There are great interests in developing Nb SIS mixers because of the extremely low noise temperature...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tun...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
A heterodyne waveguide receiver employing 1 mu m(2) Nb superconducting tunnel junctions with on chip...
We report recent results on a 580-740 GHz SIS heterodyne receiver employing a tuned 0.50m Nb/AlO ...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
The noise and gain behaviour of a Nb/Al2O3/Nb SIS waveguide mixer, with an on chip integrated tuning...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
The noise and gain of a heterodyne waveguide mixer employing Nb/Al2O3/Nb superconducting tunnel junc...
Predictions of the three-port model of the quantum theory of mixing are compared with measured resul...
There are great interests in developing Nb SIS mixers because of the extremely low noise temperature...