NOISE TEMPERATURE AND LOCAL OSCILLATOR POWER REQUIREMENT OF NBN PHONON-COOLED HOT-ELECTRON BOLOMETRIC MIXERS AT TERAHERTZ FREQUENCIES

Citation
P. Yagoubov et al., NOISE TEMPERATURE AND LOCAL OSCILLATOR POWER REQUIREMENT OF NBN PHONON-COOLED HOT-ELECTRON BOLOMETRIC MIXERS AT TERAHERTZ FREQUENCIES, Applied physics letters, 73(19), 1998, pp. 2814-2816
Citations number
15
Categorie Soggetti
Physics, Applied
Journal title
ISSN journal
00036951
Volume
73
Issue
19
Year of publication
1998
Pages
2814 - 2816
Database
ISI
SICI code
0003-6951(1998)73:19<2814:NTALOP>2.0.ZU;2-2
Abstract
In this letter, the noise performance of NbN-based phonon-cooled hot e lectron bolometric quasioptical mixers is investigated in the 0.55-1.1 THz frequency range. The best results of the double-sideband (DSB) no ise temperature are: 500 K at 640 GHz, 600 K at 750 GHz, 850 K at 910 GHz, and 1250 K at 1.1 THz. The water vapor in the signal path causes significant contribution to the measured receiver noise temperature ar ound 1.1 THz. The devices are made from 3-nm-thick NbN film on high-re sistivity Si and integrated with a planar spiral antenna on the same s ubstrate. The in-plane dimensions of the bolometer strip are typically 0.2x2 mu m. The amount of local oscillator power absorbed in the bolo meter is less than 100 nW. (C) 1998 American Institute of Physics. [S0 003-6951(98)03545-1].