4.8 Article

Picosecond pulses from wavelength-swept continuous-wave Fourier domain mode-locked lasers

Journal

NATURE COMMUNICATIONS
Volume 4, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms2870

Keywords

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Funding

  1. German Research Foundation [DFG-HU 1006/2-1]
  2. project OCT-Labs [DFG: HU1006/3-1]
  3. European Union [201880]
  4. FDML-Raman (ERC) [259158]
  5. German Research Foundation (DFG) [JI 115/1-1, JI 115/2-1]

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Ultrafast lasers have a crucial function in many fields of science; however, up to now, high-energy pulses directly from compact, efficient and low-power semiconductor lasers are not available. Therefore, we introduce a new approach based on temporal compression of the continuous-wave, wavelength-swept output of Fourier domain mode-locked lasers, where a narrowband optical filter is tuned synchronously to the round-trip time of light in a kilometre-long laser cavity. So far, these rapidly swept lasers enabled orders-of-magnitude speed increase in optical coherence tomography. Here we report on the generation of similar to 60-70 ps pulses at 390 kHz repetition rate. As energy is stored optically in the long-fibre delay line and not as population inversion in the laser-gain medium, high-energy pulses can now be generated directly from a low-power, compact semiconductor-based oscillator. Our theory predicts subpicosecond pulses with this new technique in the future.

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