Optimization of a fiber Fabry–Perot resonator ...
Document type :
Article dans une revue scientifique: Article original
DOI :
Title :
Optimization of a fiber Fabry–Perot resonator for low-threshold modulation instability Kerr frequency combs
Author(s) :
Bourcier, Germain [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Centre National d'Études Spatiales [Toulouse] [CNES]
Ousaid, Safia Mohand [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Balac, Stephane [Auteur]
Institut de Recherche Mathématique de Rennes [IRMAR]
Lumeau, Julien [Auteur]
RCMO [RCMO]
Institut FRESNEL [FRESNEL]
Moreau, Antonin [Auteur]
Institut FRESNEL [FRESNEL]
Plateforme PHOTONICS [photonics]
Bunel, Thomas [Auteur]
Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Mussot, Arnaud [Auteur]
Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Conforti, Matteo [Auteur]
Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Llopis, Olivier [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Fernandez, Arnaud [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Centre National d'Études Spatiales [Toulouse] [CNES]
Ousaid, Safia Mohand [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Balac, Stephane [Auteur]
Institut de Recherche Mathématique de Rennes [IRMAR]
Lumeau, Julien [Auteur]
RCMO [RCMO]
Institut FRESNEL [FRESNEL]
Moreau, Antonin [Auteur]
Institut FRESNEL [FRESNEL]
Plateforme PHOTONICS [photonics]
Bunel, Thomas [Auteur]
Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Mussot, Arnaud [Auteur]

Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Conforti, Matteo [Auteur]

Laboratoire de Physique des Lasers, Atomes et Molécules - UMR 8523 [PhLAM]
Llopis, Olivier [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Fernandez, Arnaud [Auteur]
Équipe Microondes et Opto-microondes pour Systèmes de Télécommunications [LAAS-MOST]
Journal title :
OPTICS LETTERS
Pages :
3214-3217
Publisher :
Optical Society of America - OSA Publishing
Publication date :
2024-05-30
ISSN :
0146-9592
English keyword(s) :
Modulation instability
Kerr Frequency Comb
Fiber Fabry-Perot resonator
Nonlinear optics
Kerr Frequency Comb
Fiber Fabry-Perot resonator
Nonlinear optics
HAL domain(s) :
Physique [physics]/Physique [physics]/Optique [physics.optics]
English abstract : [en]
We report a theoretical and experimental investigation of fiber Fabry–Perot cavities aimed at enhancing Kerr frequency comb generation. The modulation instability (MI) power threshold is derived from the linear stability ...
Show more >We report a theoretical and experimental investigation of fiber Fabry–Perot cavities aimed at enhancing Kerr frequency comb generation. The modulation instability (MI) power threshold is derived from the linear stability analysis of a generalized Lugiato–Lefever equation. By combining this analysis with the concepts of power enhancement factor (PEF) and optimal coupling, we predict the ideal manufacturing parameters of fiber Fabry–Perot (FFP) cavities for the MI Kerr frequency comb generation. Our findings reveal a distinction between the optimal coupling for modulation instability and that of the cold cavity. Consequently, mirror reflectivity must be adjusted to suit the specific application. We verified the predictions of our theory by measuring the MI power threshold as a function of detuning for three different cavities.Show less >
Show more >We report a theoretical and experimental investigation of fiber Fabry–Perot cavities aimed at enhancing Kerr frequency comb generation. The modulation instability (MI) power threshold is derived from the linear stability analysis of a generalized Lugiato–Lefever equation. By combining this analysis with the concepts of power enhancement factor (PEF) and optimal coupling, we predict the ideal manufacturing parameters of fiber Fabry–Perot (FFP) cavities for the MI Kerr frequency comb generation. Our findings reveal a distinction between the optimal coupling for modulation instability and that of the cold cavity. Consequently, mirror reflectivity must be adjusted to suit the specific application. We verified the predictions of our theory by measuring the MI power threshold as a function of detuning for three different cavities.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
ANR Project :
Source :
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