Zugriffsnummer 29170
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel Reducing the effect of thermal noise in optical cavities
Autor(in); Institution
Amairi, Sana; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Legero, Thomas; 4.3, Quantenoptik und Längeneinheit, PTB-Braunschweig
Kessler, Thomas; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Sterr, Uwe; 4.3, Quantenoptik und Längeneinheit, PTB-Braunschweig
Wübbena, Jannes B.; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Mandel, Olaf; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Schmidt, Piet O.; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Quelle/Jahr Applied Physics B: 113 (2013), 2, 233 - 242
ISSN 0340-3793 (PRINT) ; 1432-0649 (ONLINE)
DOI
Verlag Berlin [u.a.]: Springer
Freie Schlagworte laser stabilization ; thermal noise ; optical FP cavities ; Poud Drival Hall technique ; vibration sensitivity
Zusammenfassung Thermal noise in optical cavities imposes a severe limitation in the stability of the most advanced frequency standards at a level of a few 10 −16 √ s/τ for long averaging times τ. In this paper, we describe two schemes for reducing the effect of thermal noise in a reference cavity. In the first approach, we investigate the potential and limitations of operating the cavity close to instability, where the beam diameter on the mirrors becomes large. Our analysis shows that even a 10 cm short cavity can achieve a thermal-noise-limited fractional frequency instability in the low 10−16 regime. In the second approach, we increase the length of the optical cavity. We show that a 39.5 cm long cavity has the potential for a fractional frequency instability even below 10−16, while it seems feasible to achieve a reduced sensitivity of (10−10/g for vibration-induced fractional length changes in all three directions.

Zitierung

Amairi, S., Legero, T., Kessler, T., Sterr, U., Wübbena, J. B., Mandel, O., & Schmidt, P. O. (2013). Reducing the effect of thermal noise in optical cavities. Applied Physics B, 113(2), 233–242. https://doi.org/10.1007/s00340-013-5464-8

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