Title :
Frequency-Domain Measurement of the Frequency Stability of a Maser Oscillator
Author :
Tetu, Michel ; Brousseau, Roger ; Vanier, Jacques
fDate :
6/1/1980 12:00:00 AM
Abstract :
In this paper we present a direct measurement of the spectral density of both the fractional frequency fluctuations and the phase fluctuations for a rubidium (Rb) maser oscillator. A truncated polynomial is fitted to each independent set of data obtained over a Fourier frequency range between 0.1 Hz and 100 Hz. They are Sy(f) = 1.9 Ã10-25f-2 + 3.4 à 10-27f2 and S¿ = 1.2 à 10-5f-4 + 1.9 à 10-7f0, respectively. A random walk of frequency noise is dominent for frequency below 2.8 Hz while a white phase noise is dominent for the higher frequency range. These results are used to predict time-domain measurements which are then compared to experimental values.
Keywords :
Density measurement; Fluctuations; Frequency measurement; Masers; Oscillators; Phase measurement; Phase noise; Polynomials; Stability; Time domain analysis;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.1980.4314879