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March 26, 2026Scientific Reports3 citationsOpen Access

Novel photonic crystal fibre for low-noise coherent supercontinuum generation

RMR. MorelJMJ. MilloNFN. Forget

Key Points

  • The research aims to develop a photonic crystal fibre that enables low-noise coherent supercontinuum generation.
  • Designed a polarisation-maintaining all-normal dispersion photonic crystal fibre for 1030 nm femtosecond pumping.
  • Conducted numerical simulations and experiments to investigate input pulse contrast effects.
  • Characterized relative intensity noise and phase noise using various techniques.
  • Achieved pulse-to-pulse relative intensity noise below 0.5%.
  • Obtained optical phase deviation under 15 mrad.
  • Demonstrated phase noise levels down to -150 dBc/Hz at 10 kHz from the carrier.

Abstract

Abstract We present a polarisation-maintaining all-normal dispersion photonic crystal fibre designed for 1030 nm femtosecond pumping, enabling ultra-stable and coherent supercontinuum (SC) generation spanning 650–1300 nm. The fibre’s polarisation-maintaining properties are achieved through two larger central holes in the structure, which is an alternative approach to using conventional stress rods. The fibre is specifically engineered to achieve minimum dispersion near 1030 nm, making it ideal for ultrafast comb-based metrology, and widely tunable optical parametric amplifier (OPA) systems. We further investigate the influence of input pulse contrast on supercontinuum generation through both numerical simulations and experiments. Relative intensity noise (RIN) and phase noise (PN) are characterized using three complementary techniques: dispersive Fourier transform (DFT), the Bellini–Hänsch interferometric method, and the dual-reference oscillator cross-correlation technique. The results demonstrate excellent stability, with pulse-to-pulse RIN below 0.5%, an optical phase deviation under 15 mrad, and phase noise levels down to − 150 dBc/Hz at 10 kHz from the carrier, confirming the fibre’s suitability for demanding ultrafast applications.

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Cite This Study

Morel et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc85fdc3bde448917d5chttps://doi.org/10.1038/s41598-026-43460-5
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