DocumentCode
1359406
Title
An ultralow noise microwave oscillator based on a high-Q liquid nitrogen cooled sapphire resonator
Author
Woode, Richard A. ; Tobar, Michael E. ; Ivanov, Eugene N. ; Blair, David G.
Author_Institution
Dept. of Phys., Western Australia Univ., Nedlands, WA, Australia
Volume
43
Issue
5
fYear
1996
Firstpage
936
Lastpage
941
Abstract
Two liquid nitrogen-cooled sapphire loaded cavities (SLC´s) operating at about 80 K have been successfully constructed, Both cavities were designed to operate on the whispering gallery (WG) E/sub 12, 1, /spl delta// mode at a resonant frequency of 8.95 GHz. The first SLC was used as the frequency-determining element in a loop oscillator, while the second was used as a frequency discriminator to measure oscillator phase noise. The single sideband phase noise of a free running loop oscillator incorporating the first SLC was measured as -133 dBc/Hz at an offset frequency of 1 kHz, and was limited by the SLC Q-factor and the amplifier flicker phase noise. By using specially designed feedback electronics the oscillator phase noise was reduced to -156 dBc/Hz and -162 dBc/Hz at 1 and 10 kHz offset, respectively. This measurement was shown to be limited by the electronic flicker noise imposed by the phase detector in the feedback electronics, To our knowledge the phase noise and resonator Q-factor of 6/spl times/10/sup 7/ represent the best results ever measured at liquid nitrogen temperatures or above.
Keywords
Q-factor; cryogenic electronics; dielectric resonator oscillators; discriminators; flicker noise; microwave oscillators; phase noise; sapphire; 8.95 GHz; 80 K; Al/sub 2/O/sub 3/; Q-factor; amplifier flicker phase noise; cryogenic temperatures; dielectric resonators; frequency discriminator; frequency-determining element; liquid nitrogen cooling; loop oscillator; microwave oscillator; offset frequency; oscillator phase noise; phase detector; resonant frequency; sapphire loaded cavities; sapphire resonator; single sideband phase noise; whispering gallery mode; 1f noise; Feedback; Frequency measurement; Microwave oscillators; Noise measurement; Phase detection; Phase measurement; Phase noise; Q factor; Resonant frequency;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.535497
Filename
535497
Link To Document