DocumentCode :
1528460
Title :
Advanced noise reduction techniques for ultra-low phase noise optical-to-microwave division with femtosecond fiber combs
Author :
Zhang, Wei ; Xu, Zhenyu ; Lours, Michel ; Boudot, Rodolphe ; Kersalé, Yann ; Luiten, Andre N. ; Coq, Y.L. ; Santarelli, Giorgio
Author_Institution :
Lab. Nat. d´´Essais- Syst. de Reference Temps Espace (LNE-SYRTE), Univ. Pierre et Marie Curie (UPMC), Paris, France
Volume :
58
Issue :
5
fYear :
2011
fDate :
5/1/2011 12:00:00 AM
Firstpage :
900
Lastpage :
908
Abstract :
We report what we believe to be the lowest phase noise optical-to-microwave frequency division using fiber-based femtosecond optical frequency combs: a residual phase noise of -120 dBc/Hz at 1 Hz offset from an 11.55 GHz carrier frequency. Furthermore, we report a detailed investigation into the fundamental noise sources which affect the division process itself. Two frequency combs with quasi-identical configurations are referenced to a common ultrastable cavity laser source. To identify each of the limiting effects, we implement an ultra-low noise carrier-suppression measurement system, which avoids the detection and amplification noise of more conventional techniques. This technique suppresses these unwanted sources of noise to very low levels. In the Fourier frequency range of ~200 Hz to 100 kHz, a feed-forward technique based on a voltage-controlled phase shifter delivers a further noise reduction of 10 dB. For lower Fourier frequencies, optical power stabilization is implemented to reduce the relative intensity noise which causes unwanted phase noise through power-to-phase conversion in the detector. We implement and compare two possible control schemes based on an acousto-optical modulator and comb pump current. We also present wideband measurements of the relative intensity noise of the fiber comb.
Keywords :
acousto-optical modulation; fibre lasers; frequency dividers; high-speed optical techniques; interference suppression; laser cavity resonators; laser stability; microwave photonics; optical fibres; Fourier frequency; acousto optical modulator; comb pump current; feed forward technique; femtosecond fiber comb; fiber based femtosecond optical frequency comb; frequency 11.55 GHz; noise reduction technique; optical power stabilization; ultralow noise carrier suppression measurement system; ultralow phase noise optical-to-microwave division; ultrastable cavity laser; voltage controlled phase shifter; Noise measurement; Optical fibers; Optical noise; Optical pulses; Phase noise;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2011.1890
Filename :
5776744
Link To Document :
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