collaborators

6 papers

physics.optics2025

Roadmap: Emerging Platforms and Applications of Optical Frequency Combs and Dissipative Solitons

Dmitry Skryabin, Arne Kordts, Richard Zeltner +31

The discovery of optical frequency combs (OFCs) has revolutionised science and technology by bridging electronics and photonics, driving major advances in precision measurements, a…

physics.optics2025

Laser self-injection locking to fiber Fabry-Perot resonator for frequency comb generation

Germain Bourcier, Stephane Balac, Julien Lumeau +7

This study demonstrates that self-injection locking (SIL) of a distributed feedback (DFB) laser to a high-Q fiber Fabry Perot (FFP) resonator, fabricated with highly nonlinear fibe…

physics.optics2025

Fast and accurate modelling of Kerr-Brillouin combs in Fabry-Perot resonators

Matteo Conforti, Thomas Bunel, Auro M. Perego +1

We introduce a new mean-field equation for modeling Fabry-Perot resonators filled with a dispersive medium exhibiting both Brillouin and Kerr nonlinearities, e.g. an optical fiber.…

physics.optics2025

Experimental observation of self-frequency-shifting Raman quasi-solitons in a fiber Fabry-Perot resonator

Thomas Bunel, Matteo Conforti, Arnaud Mussot

We report the generation of self-frequency-shifting Raman quasi-solitons in a pulse-pumped high-Q fiber Fabry-Perot resonator in the weak normal dispersion regime. They are induced…

physics.optics2025

Dual-Frequency Comb in Fiber Fabry-Perot Resonator

Thomas Bunel, Debanuj Chatterjee, Julien Lumeau +3

This paper presents a novel approach to dual-frequency comb generation utilizing a single fiber Fabry-Perot resonator, advancing the implementation of these sources in fiber-based…

physics.optics2025

Brillouin-Induced Kerr Frequency Comb in normal dispersion fiber Fabry Perot resonators

Thomas Bunel, Julien Lumeau, Antonin Moreau +6

We report the generation of a stable, broadband frequency comb, covering more than 10 THz, using a normal dispersion fiber Fabry-Perot resonator with a high quality factor of 69 mi…