DocumentCode
3445885
Title
Progress in optical frequency measurements at BNM-SYRTE
Author
Brusch, A. ; Kolker, D.B. ; Zondy, J.-J. ; Acef, O. ; Wallerand, J.P. ; Knight, J.C. ; Russel, P.S.J. ; Wadsworth, W.J. ; Courtillot, I. ; Quessada, A. ; Santarelli, G. ; Clairon, A. ; Lemonde, P. ; Rovera, G.D.
Author_Institution
BNM-SYRTE, Paris
fYear
2004
fDate
June 27 2004-July 2 2004
Firstpage
214
Lastpage
214
Abstract
We report recent progress in optical frequency measurements at the BNM-SYRTE. The work presented is centered around the development of a frequency measurement chain based on a femtosecond laser (Diddams, 2001) and the construction of an optical frequency standard (OFS) using cold Sr atoms. The Kerr lens mode-locked femtosecond laser is centered at 800 nm with a repetition rate at 840 MHz, locked to a cryogenic oscillator referenced to a primary Cs standard. The frequency comb from the laser is broadened to more than an optical octave in a photonic crystal fiber. The infrared part of the frequency comb is frequency doubled in KTP and heterodyned with the green part of the spectrum to yield the carrier envelope offset frequency. For absolute frequency measurements, the CW laser from an OFS is superimposed with the frequency comb, and the beat signal with an adjacent line is measured. We present recent developments in our setup, as well as recent experiments on high stability transfer between various OFS in the lab
Keywords
caesium; frequency standards; laser mode locking; optical frequency conversion; oscillators; photonic crystals; potassium compounds; strontium; 800 nm; 840 MHz; BNM-SYRTE; CW laser; Cs; Kerr lens mode-locked femtosecond laser; Sr; carrier envelope offset frequency; cold Sr atoms; cryogenic oscillator; frequency comb; optical frequency measurements; optical frequency standard; optical octave; photonic crystal fiber; primary Cs standard; Atom lasers; Atom optics; Fiber lasers; Frequency measurement; Laser mode locking; Measurement standards; Optical harmonic generation; Optical mixing; Standards development; Ultrafast optics;
fLanguage
English
Publisher
ieee
Conference_Titel
Precision Electromagnetic Measurements Digest, 2004 Conference on
Conference_Location
London
Print_ISBN
0-7803-8493-8
Type
conf
DOI
10.1109/CPEM.2004.305537
Filename
4097192
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