Measurement of the fundamental thermal noise limit in a cryogenic sapphire frequency standard using bimodal maser oscillations

We report observations of the Schawlow-Townes noise limit in a cryogenic sapphire secondary frequency standard. The effect causes a fundamental limit to the frequency stability, and was measured through the novel excitation of a bimodal maser oscillation of a Whispering Gallery doublet at 12.04 GHz....

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Veröffentlicht in:Physical review letters 2008-06, Vol.100 (23), p.233901-233901, Article 233901
Hauptverfasser: Benmessai, Karim, Creedon, Daniel Lloyd, Tobar, Michael Edmund, Bourgeois, Pierre-Yves, Kersalé, Yann, Giordano, Vincent
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Sprache:eng
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Zusammenfassung:We report observations of the Schawlow-Townes noise limit in a cryogenic sapphire secondary frequency standard. The effect causes a fundamental limit to the frequency stability, and was measured through the novel excitation of a bimodal maser oscillation of a Whispering Gallery doublet at 12.04 GHz. The beat frequency of 10 kHz between the oscillations enabled a sensitive probe for this measurement of fractional frequency instability of 10(-14) tau(-1/2) with only 0.5 pW of output power.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.100.233901