Here you will find a list of scientific publications linked to the project.
2026
- Design of an all-normal dispersion photonic crystal fiber for stable and coherent supercontinuum generation
Morel, Romain and Thibaut, Victoire and Marcadier, Matis and Pertot, Y and Jullien, Aurélie and Forget, Nicolas and Cassez, Andy and Andrieux, Vincent and Labat, D and Vanvinca, Olivier and Kudlinski, A. and Dudley, John Michael and Sylvestre, Thibaut
SPIE Photonics Europe (2026), Strasbourg, France, pages 14092-27, apr 2026
https://spie.org/photonics-europe/presentation/Design-of-an-all-normal-dispersion-photonic-crystal-fiber-for/14092-27 - Dual-Wavelength Pumped Supercontinuum Generation and Temporal Reflection Dynamics in a Nonlinear Photonic Integrated Circuit
Khallouf, Charbel and Sader, Lynn and Bougaud, Alexis and Fanjoux, Gil and Little, Brent. E. and Chu, Say Tak and Moss, D.J. and Morandotti, Roberto and Agrawal, Govind. P and Dudley, John Michael and Wetzel Benjamin and Sylvestre, Thibaut
SPIE Photonics Europe (2026), Strasbourg, France, pages 14092-86, apr 2026
https://spie.org/photonics-europe/presentation/Dual-wavelength-pumped-supercontinuum-generation-and-temporal-reflection-dynamics-in/14092-86 - Novel photonic crystal fibre for low-noise coherent supercontinuum generation
Morel, R., Millo, J., Forget, N. et al.
Scientific Reports (2026)
https://doi.org/10.21203/rs.3.rs-8288798/v1 - Phase noise properties of supercontinuum generation in all-normal dispersion fibers
M. Marcadier, N. Forget, Y. Pertot and A. Jullien
Optics Letters 51, No.2 (2026)
https://doi.org/10.48550/arXiv.2511.10351
2025
- Conception d’une nouvelle fibre optique microstructurée à dispersion normale pour la génération de supercontinuum à 1030 nm
Romain Morel, Victoire Thibaut, Maris Marcadier, Aurélie Jullien, Nicolas Forget, et al.
Journées Nationales d’optique guidée (JNOG’2025), July2025, Sète, France
https://hal.science/hal-05317489/ - A novel all-normal dispersion photonic crystal fiber design for low-noise coherent supercontinuum generation with 1030 nm pumping.
R Morel, V Thibaut, M Marcadier, A Jullien, N Forget, et al..
CLEO EUROPE 2025, EPS, June 2025, Munich, Germany.
https://hal.science/hal-05079172v1 - Dispersive wave generation in photonic crystal fibers with normal dispersion pumping
E. Crevon, C. Khallouf, J.M. Dudley, T. Sylvestre
Journal of the Optical Society of America B 2025, Vol. 42, No. 4
https://doi.org/10.1364/JOSAB.549179 - Fibre supercontinuum generation: Progress and perspectives
J. M. Dudley, G. Genty, A. Heidt, T. Sylvestre, J. C. Travers and J. R. Taylor
EPL 151, 55001 (2025)
https://iopscience.iop.org/article/10.1209/0295-5075/adfe8c
2024
- Distributed measurement of supercontinuum generation along a silica fiber taper using a confocal spectrometer
Y. Haddad, T. Sylvestre, JC Beugnot, S. Margueron, G. Fanjoux
J. Eur. Opt. Society-Rapid Publ. 2024, 20, 33
https://doi.org/10.1051/jeos/2024033
- Supercontinuum generation in high-index doped silica photonic integrated circuits under diverse pumping settings
C. Khallouf, V. T. Hoang, G. Fanjoux, B. Little, S. T. Chu, D. J. Moss, R. Morandotti, J. M. Dudley, B. Wetzel, T. Sylvestre
EPJ Web of Conferences 309, 08011 (2024)
https://doi.org/10.1051/epjconf/202430908011 - Raman scattering and supercontinuum generation in high-index doped silica chip waveguides
C. Khallouf, V. T. Hoang, G. Fanjoux, B. Little, S. T. Chu, D. J. Moss, R. Morandotti, J. M. Dudley, B. Wetzel, T. Sylvestre
Proceedings Volume 13004, Nonlinear Optics and its Applications 2024; 130040I (2024)
https://doi.org/10.1117/12.3021965 - Characterization of supercontinuum generation along a silica tapered optical fiber using a confocal micro-spectrometer
Y. Haddad, T. Sylvestre, JC. Beugnot, S. Margueron, G. Fanjoux
Proceedings Volume 13004, Nonlinear Optics and its Applications 2024; 130040B (2024)
https://hal.science/hal-05068618v1
- Mid-infrared dielectric laser acceleration in a silicon dual pillar structure
L. Brückner, T. Chlouba, Y. Morimoto, N. Schönenberger, T. Shibuya, T. Siefke, U. D. Zeitner, and P. Hommelhoff
Opt. Express 32, 28348-28355 (2024)
https://doi.org/10.1117/12.3022077