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Plasmon-enhanced waveguide for dispersion compensation in mid-infrared quantum cascade laser frequency combs
Author(s) -
Yves Bidaux,
Ilia Sergachev,
Wolf Wuester,
Richard Maulini,
Tobias Gresch,
A. Bismuto,
Stéphane Blaser,
Antoine Müller,
Jérôme Faist
Publication year - 2017
Publication title -
optics letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.524
H-Index - 272
eISSN - 1071-2763
pISSN - 0146-9592
DOI - 10.1364/ol.42.001604
Subject(s) - optics , quantum cascade laser , cascade , plasmon , infrared , laser , dispersion (optics) , materials science , waveguide , optoelectronics , physics , chemistry , chromatography
We demonstrate dispersion compensation in mid-infrared quantum cascade laser frequency combs (FCs) emitting at 7.8 μm using the coupling of a dielectric waveguide to a plasmonic resonance in the top cladding layer of the latter. Devices with group velocity dispersion lower than 110  fs 2 /mm were fabricated, and narrow beatnotes with FWHM linewidths below 1 kHz were measured on the entire operation range. At -20°C, the optical output power reaches 275 mW, and the optical spectrum spans 60  cm -1 . The multi-heterodyne beating spectrum of two devices was measured and spans 46  cm -1 , demonstrating the potential of dispersion-engineered waveguides for the fabrication of highly stable and reliable quantum cascade laser FCs with high output power across the mid-infrared.

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