DocumentCode :
125657
Title :
Remotely manageable phase-locked loop controller for stabilizing optical frequency combs
Author :
Hucl, Vaclav ; Cizek, Martin ; Smid, Radek ; Lazar, Josef ; Cip, Ondrej
Author_Institution :
Inst. of Sci. Instrum., Brno, Czech Republic
fYear :
2014
fDate :
16-23 Aug. 2014
Firstpage :
1
Lastpage :
4
Abstract :
The optical frequency synthesizers (femtosecond combs) are used mainly in the field of precise measurement of optical frequencies, laser spectroscopy and interferometer distance surveying. They generates thousands narrow-linewidth coherent frequencies at the same time. The spacing of generated components is equaled to the repetition frequency of femtosecond pulses of the laser. The position of the comb spectrum has a frequency offset that is derived from carrier to envelope frequency difference. The repetition frequency and mentioned frequency offset belong to main controlled parameters of this synthesizer. These two parameters are controlled by ultra-stable frequency standards i.e. H-masers, Cs- or Rb- clocks. We present the complete digital signal processing chain for phase-locked loop (PLL) control of the offset frequency. The setup is able to overcome some dropouts causes the femtosecond laser non-stabilities (temperature drifts, ripple noise and electricity spikes). It is designed as two stage control loop, where controlled offset frequency is permanently monitored by a digital signal processing. In case of dropouts of PLL, the frequency-locked loop keeps the controlled frequency in the required limits. The presented work gives the possibility to long-time operation of femtosecond combs which is necessary when the optical frequency stability measurement of ultra-stable lasers is required. The detailed description of the modern solution of the PLL with remote management is presented.
Keywords :
frequency standards; frequency synthesizers; high-speed optical techniques; laser frequency stability; phase locked loops; signal processing; Cs; Cs clock; H-masers; Rb; Rb clock; digital signal processing chain; femtosecond combs; optical frequency combs; optical frequency stability measurement; optical frequency synthesizers; remotely manageable phase-locked loop controller; ultra-stable frequency standards; Circuit stability; Frequency control; Frequency measurement; Optical interferometry; Phase locked loops; Radio frequency; Ultrafast optics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
General Assembly and Scientific Symposium (URSI GASS), 2014 XXXIth URSI
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/URSIGASS.2014.6929047
Filename :
6929047
Link To Document :
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