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Precise Stabilization of the Optical Frequency of WGMRsCrystalline whispering gallery mode resonators (CWGMRs) made of crystals with axial symmetry have ordinary and extraordinary families of optical modes. These modes have substantially different thermo-refractive constants. This results in a very sharp dependence of differential detuning of optical frequency on effective temperature. This frequency difference compared with clock gives an error signal for precise compensation of the random fluctuations of optical frequency. Certain crystals, like MgF2, have turnover points where the thermo-refractive effect is completely nullified. An advantage for applications using WGMRs for frequency stabilization is in the possibility of manufacturing resonators out of practically any optically transparent crystal. It is known that there are crystals with negative and zero thermal expansion at some specific temperatures. Doping changes properties of the crystals and it is possible to create an optically transparent crystal with zero thermal expansion at room temperature. With this innovation s stabilization technique, the resultant WGMR will have absolute frequency stability The expansion of the resonator s body can be completely compensated for by nonlinear elements. This results in compensation of linear thermal expansion (see figure). In three-mode, the MgF2 resonator, if tuned at the turnover thermal point, can compensate for all types of random thermal-related frequency drift. Simplified dual-mode method is also available. This creates miniature optical resonators with good short- and long-term stability for passive secondary frequency ethalon and an active resonator for active secondary frequency standard (a narrowband laser with long-term stability).
Document ID
20090008430
Acquisition Source
Jet Propulsion Laboratory
Document Type
Other - NASA Tech Brief
Authors
Savchenkov, Anatoliy
(California Inst. of Tech. Pasadena, CA, United States)
Matsko, Andrey
(California Inst. of Tech. Pasadena, CA, United States)
Matsko, Andrey
(California Inst. of Tech. Pasadena, CA, United States)
Yu, Nan
(California Inst. of Tech. Pasadena, CA, United States)
Maleki, Lute
(California Inst. of Tech. Pasadena, CA, United States)
Iltchenko, Vladimir
(California Inst. of Tech. Pasadena, CA, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2009
Publication Information
Publication: NASA Tech Briefs, January 2009
Subject Category
Documentation And Information Science
Report/Patent Number
NPO-45180
Distribution Limits
Public
Copyright
Public Use Permitted.
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