Mid-infrared supercontinuum generation in As2S3-silica “nano-spike” step-index waveguide

in: Optics Express (2013)
Schmidt, Markus A.; Wondraczek, Lothar; Granzow, Nicolai; Chang, Wonkeun; Wang, Li; Coulombier, Quentin; Troles, Johann; Toupin, Perrine; Lee, Kevin F.; Fermann, Martin E.; Hartl, Ingmar; Russell, Philip St. J.
Efficient generation of a broad-band mid-infrared supercontinuum spectrum is reported in an arsenic trisulphide waveguide embedded in silica. A chalcogenide “nano-spike”, designed to transform the incident light adiabatically into the fundamental mode of a 2-mm-long uniform section 1 μm in diameter, is used to achieve high launch efficiencies. The nano-spike is fully encapsulated in a fused silica cladding, protecting it from the environment. Nano-spikes provide a convenient means of launching light into sub-wavelength scale waveguides. Ultrashort (65 fs, repetition rate 100 MHz) pulses at wavelength 2 μm, delivered from a Tm-doped fiber laser, are launched with an efficiency ~12% into the subwavelength chalcogenide waveguide. Soliton fission and dispersive wave generation along the uniform section result in spectral broadening out to almost 4 μm for launched energies of only 18 pJ. The spectrum generated will have immediate uses in metrology and infrared spectroscopy.

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