Title :
Noise Temperature and Absorbed LO Power Measurement Methods for NbN Phonon-Cooled Hot Electron Bolometric Mixers at Terahertz Frequencies
Author :
Merkel, Harald F. ; Yagoubov, Pavel A. ; Kroug, Matthias ; Khosropanah, Pourya ; Kollberg, Erik L. ; Tsman, Gregory N Gol ; Gershenzon, Eugene M.
Author_Institution :
Chalmers University of Technology, 412 96 Gothenburg, Sweden. harald@ep.chalmers.se
Abstract :
In this paper the absorbed LO power requirements and the noise performance of NbN based phonon-cooled hot electron bolometric (HEB) quasioptical mixers are investigated for RF frequencies in the 0.55-1.1 range The minimal measured DSB noise temperatures are about 500 K at 640 GHz, 600 K at 750 GHz, 850 K at 910 GHz and 1250 K at 1.1 THz. The increase in noise temperature at 1.1THz is attributed to water absorption. The absorbed LO power is measured using a calorimetric approach. The results are subsequently corrected for lattice heating. These values are compared to results of a novel one dimensional hot spot mixer models and to a more traditional isotherm method which tends to underestimate the absorbed LO power for small bias powers. Typically a LO power between 50nW and 100nW is needed to pump the device to the optimal operating point.
Keywords :
Absorption; Electrons; Frequency measurement; Heating; Lattices; Noise measurement; Power measurement; Radio frequency; Temperature distribution; Temperature measurement;
Conference_Titel :
Microwave Conference, 1998. 28th European
Conference_Location :
Amsterdam, Netherlands
DOI :
10.1109/EUMA.1998.338003