4.8 Article

Hybrid soliton dynamics in liquid-core fibres

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NATURE COMMUNICATIONS
卷 8, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-017-00033-5

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  1. Deutsche Forschungsgemeinschaft (DFG) [SCHM 2655/2-1, SCHM 2655/3-1]
  2. Thuringian State by European Regional Development Funds (ERDF) [13023-715, 2015FGI0011, 2015-0021]
  3. Carl-Zeiss-Stiftung
  4. Research School of Advanced Photon Science of the Helmholtz Institute Jena

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The discovery of optical solitons being understood as temporally and spectrally stationary optical states has enabled numerous innovations among which, most notably, super-continuum light sources have become widely used in both fundamental and applied sciences. Here, we report on experimental evidence for dynamics of hybrid solitons-a new type of solitary wave, which emerges as a result of a strong non-instantaneous nonlinear response in CS2-filled liquid-core optical fibres. Octave-spanning supercontinua in the mid-infrared region are observed when pumping the hybrid waveguide with a 460 fs laser (1.95 mu m) in the anomalous dispersion regime at nanojoule-level pulse energies. A detailed numerical analysis well correlated with the experiment uncovers clear indicators of emerging hybrid solitons, revealing their impact on the bandwidth, onset energy and noise characteristics of the supercontinua. Our study highlights liquid-core fibres as a promising platform for fundamental optics and applications towards novel coherent and reconfigurable light sources.

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