The institute
FEMTO's news

You are here

A new source of infrared light thanks to fibre optic cascades

Scientists from  FEMTO-ST Institute and McGill University (Montreal, Canada) have designed and developed in collaboration with three French companies a light source covering the entire mid-infrared wavelength range: from 2 to 10 µm. This work, which is published in Laser and Photonics Reviews , opens up applications in spectrometry and biomedical imaging.

See the CNRS article

Fiber-based supercontinuum1 (SC) light sources have become enormously useful in the last decade for a wide range of industrial and scientific applications. New uses are constantly emerging due to their unique optical properties that combine high brightness, multi-octave frequency bandwidth, inherently fiber delivery and single-mode output. Applications include optical coherence tomography (OCT), material processing, chemical sensing, gas monitoring, broadband imaging, and absorption spectroscopy. State-of-the-art SC lasers are based on silica-glass microstructured optical fibers, providing watts of output power over the bandwidth 0.4-2 µm. However, many applications such as detection of chemical and biological species would benefit from extending the SC spectrum beyond the state-of-the-art, in particular towards the mid-infrared (IR) range. This currently motivates significant research effort focused on extending the wavelength coverage towards the 2 to 20 µm molecular fingerprint region.

Various infrared soft glasses based on chalcogenide, tellurite, telluride, heavy-metal oxide and fluoride have been used for drawing highly nonlinear fibers for the mid-infrared, and experiments have shown efficient mid-IR SC generation up to 14 µm in chalcogenide optical fibers and up to 16 µm in telluride fibers. However, most of these mid-IR SC sources have been demonstrated using bulky and expensive mid-IR pump sources such as optical parametric oscillators and amplifiers, making them impractical for most abovementioned applications.

Now writing in Laser and Photonics Reviews, S. Venck and coworkers (SelenOptics) report a compact all-fiber cascaded system which provides a supercontinuum emission spanning the entire 2-10 µm mid-infrared range, thus offering a new reliable laser solution for molecular spectroscopy, remote sensing, optical coherence tomography, and hyperspectral imaging. To get this broad continuous spectrum, they developed a more practical and elegant solution based on a cascaded silica-fluoride-chalcogenide fiber system directly pumped by a compact pulsed fiber laser at a wavelength of 1.55 µm. The initial laser spectrum was progressively broadened and redshifted in the three cascaded fibers through nonlinear optical effects, enabling a stepwise extension towards the mid-infrared. This all-fiber system was shown to generate a nearly flat broadband mid-infrared continuous spectrum from 2 µm to 10 µm (See Figure 1), the upper transmission limit of the chalcogenide fiber, with several tens of milliwatts of output power.

T.Sylvestre (FEMTO-ST), who managed the project with SelenOptics, says argues:“This simple technique paves the way for low cost, practical, and robust broadband sources for mid-IR sensing and spectroscopy. Nothing expect the synchrotron radiation can give wider bandwidth”. The authors further describe in their paper a fully-realistic numerical model used to design the fibers and to simulate the nonlinear pulse propagation through the cascaded fiber system and they use numerical results to discuss and optimize the physical processes underlying the spectral broadening in the cascaded system. The teams concur that their mid-infrared supercontinuum source is now ready for commercialization and they are working on ways forward.

This work involves researchers from the FEMTO-ST institute, The McGill University in Montréal (Canada) and three French companies ( SelenOptics, Le Verre Fluoré, Leukos) and is the result of a European H2020 Marie-Curie ITN project under grant agreement 722328, managed by CNRS.

https://doi.org/10.1002/lpor.202000011

Contact : Thibaut Sylvestre

  • Recognizing liars from the sound of their voice ?

    Scientists have prouved that the intensity, speed and pitch of the speaker's voice automatically influences our perception of the reliability and honesty of his or her speech. This work is published in the prestigious journal "Nature Communications"

    Read more
  • European project for the development of sustainable and high-performance bio-based composites

    Led by FEMTO-ST and supported by the University of Franche-Comté, the « SSUCHY » R&D project which brings together 17 European partners is entering its final phase. The project is now quite advanced.

    Read more
  • Understanding the cytotoxicity of metallic nanoparticles

    A recent study published in the journal "Chemical Science" and involving FEMTO-ST gives new insights into the understanding of the mechanisms of DNA alteration in cells by metallic nanoparticles.

    Read more
  • Artificial intelligence for next-generation ultrafast photonics

    How can machine learning and associated methods improve the development of next-generation laser sources and revolutionize applications where ultrafast light plays a central role?

    Read more
  • Strong involvement of FEMTO-ST in the H2020 project "PhotonHub Europe"

    The objective of this project is to help European SMEs to increase their competitiveness through photonics with a online guidance, which will offer the support of 54 leading competence centers in Europe, including FEMTO-ST, which is also the scientific coordinator at the national level.

    Read more
  • First demonstration of self-confined nonlinear waves in plasmonic structures

    By providing the very first experimental evidence of the existence of this phenomenon, FEMTO-ST researchers and their partners hope to be able to generate this nonlinear effect using low intensity laser sources, in order to use it for nanophotonics applications.

    Read more
  • Mengjia Wang receives the « Chinese government award 2020 »

    As a PhD student of the Optics Department of FEMTO-ST , Mengjia Wang has been recognized by the Chinese Government for his outstanding work in the field of nanophotonics and plasmonics.

    Read more
  • Laurent LARGER named Fellow 2021 of OSA

    Full professor of Physics/Optics at the University of Franche-Comté and researcher at FEMTO-ST institute, Laurent Larger is rewarded for his pioneering work on nonlinear dynamics in optoelectronics and on the development of new architectures for photonic artificial intelligence.

    Read more
  • CNRS "Proof by Image" competition

     Discover the selection of the 20 images selected by the CNRS, one of which is presented by FEMTO-ST, and vote for the "audience award" photo.

    Read more
  • Imaging quantum interference of entangled photon pairs of extremely high dimensionality

    Researchers from the Optics Department have developed an imaging device allowing the spatial and temporal resolution of the phenomenon of quantum interference between pairs of entangled photons of extremely high dimensionality.

    Read more

Pages