1-GHz repetition rate femtosecond OPO with stabilized offset between signal and idler frequency combs

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We report an optical parametric oscillator (OPO) based on periodically poled lithium niobate (PPLN) that is synchronously pumped by a femtosecond Ti:sapphire laser at 1 GHz repetition rate. The signal output has a center wavelength of 1558nm and its spectral bandwidth amounts to 40 nm. The OPO operates in a regime where the signal- and idler frequency combs exhibit a partial overlap around 1600 nm. In this near-degeneracy region, a beat at the offset between the signal and idler frequency combs is detected. Phase-locking this beat to an external reference stabilizes the spectral envelopes of the signal- and idler output. At the same time, the underlying frequency combs are stabilized relative to each other with an instability of 1.5×10 −17 at 1 s gate time.

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ISO 690GEBS, Raphael, Thomas DEKORSY, Scott A. DIDDAMS, Albrecht BARTELS, 2008. 1-GHz repetition rate femtosecond OPO with stabilized offset between signal and idler frequency combs. In: Optics Express. 2008, 16(8), pp. 5397-5405. Available under: doi: 10.1364/OE.16.005397
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@article{Gebs2008repet-9429,
  year={2008},
  doi={10.1364/OE.16.005397},
  title={1-GHz repetition rate femtosecond OPO with stabilized offset between signal and idler frequency combs},
  number={8},
  volume={16},
  journal={Optics Express},
  pages={5397--5405},
  author={Gebs, Raphael and Dekorsy, Thomas and Diddams, Scott A. and Bartels, Albrecht}
}
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    <dcterms:abstract xml:lang="eng">We report an optical parametric oscillator (OPO) based on periodically poled lithium niobate (PPLN) that is synchronously pumped by a femtosecond Ti:sapphire laser at 1 GHz repetition rate. The signal output has a center wavelength of 1558nm and its spectral bandwidth amounts to 40 nm. The OPO operates in a regime where the signal- and idler frequency combs exhibit a partial overlap around 1600 nm. In this near-degeneracy region, a beat at the offset between the signal and idler frequency combs is detected. Phase-locking this beat to an external reference stabilizes the spectral envelopes of the signal- and idler output. At the same time, the underlying frequency combs are stabilized relative to each other with an instability of 1.5×10 −17 at 1 s gate time.</dcterms:abstract>
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