Amplification and beam delivery of energetics pulses for large scale laser facility's pilots
Description
Compactness, stability and beam quality are some benefits of fiber lasers. In large scale laser facilities, those systems are already used to generate and amplify pulses but are limited to the nanojoule range. The goal of this thesis consists in building a millijoule range system satisfying large scale laser facility requirements. Amplification and beam delivery systems have been considered. In the first case, an all-fiber MOPA has been realized. Using a 32 μm mode field diameter tapered fiber, we amplified 10 ns pulses up to 500 μJ with excellent temporal, spectral and spatial properties. In a second step, we consider the fiber beam delivery of those pulses over 15 m. In order to minimize nonlinear effects, hollow-core fibers have been used. This way, thanks to a 21 μm mode field diameter fiber, 30 kW peak power nanosecond pulses have been delivered over 15 m with negligible temporal and spectral distortions. In addition of amplification and beam delivery, we also considered technological building blocks which could be used to modified actual fiber seeder architecture. Chirped laser diode has been used to generate pulses and allowed us to finally obtained 1,25 mJ with our MOPA system. Fiber spatial beam shaping has also been performed in the 100 μJ range thanks to a microstructured, single-mode, polarization maintaining fiber which delivers a coherent top-hat beam. Finally, this work confirms the great potential of fiber systems for high energy amplification and beam delivery for the next generation of large scale laser facilities seeder. (author)
Abstract (French)
Le faible encombrement, la stabilite, et la qualite spatiale du faisceau qu'ils delivrent expliquent le succes des systemes laser fibres. Dans le cadre des installations laser de puissance, ceux-ci sont utilises pour generer et amplifier les impulsions mais restent limites a des energies de l'ordre du nanojoule pour des impulsions nanosecondes. L'objectif de cette these est d'atteindre la gamme du millijoule par impulsion avec un niveau de performances compatible de l'injection de telles installations. Ainsi, les problematiques d'amplification et de transport fibre ont ete traitees. Dans le premier cas, un systeme MOPA entierement fibre base sur une fibre effilee a permis de delivrer des impulsions de 10 ns et 500 μJ avec des caracteristiques temporelles, spectrales et spatiales en accord avec le cahier des charges. Pour la problematique de transport, et afin de minimiser les effets non lineaires, l'utilisation de fibres a coeur creux a ete privilegiee. Une telle fibre, de 21 μm de diametre de mode, a ainsi permis de transporter des impulsions de plus de 30 kW crete en minimisant les distorsions temporelles et spectrales. Enfin, en complement de ces deux problematiques, nous avons egalement identifie des briques technologiques permettant d'envisager une modification en profondeur de l'architecture des sources fibrees actuelles des grandes installations laser. L'utilisation d'une diode laser a derive de frequence a ainsi permis d'atteindre une energie de 1,25 mJ pour des impulsions de 10 ns. La mise en forme spatiale fibree du faisceau a egalement pu etre realisee pour des impulsions de l'ordre de 100 μJ grace a une fibre optique microstructuree specialement realisee
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Additional details
Additional titles
- Original title (French)
- Amplification et transport fibre d'impulsions energetiques pour les pilotes des installations laser de puissance
Publishing Information
- Imprint Pagination
- 242 p.
- Report number
- FRCEA-TH--17018
INIS
- Country of Publication
- France
- Country of Input or Organization
- France
- INIS RN
- 55086075
- Subject category
- S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; S42: ENGINEERING;
- Resource subtype / Literary indicator
- Thesis
- Descriptors DEI
- BRILLOUIN EFFECT; COMPUTERIZED SIMULATION; KERR EFFECT; LASERS; MICROSTRUCTURE; OPTICAL FIBERS
- Descriptors DEC
- COHERENT SCATTERING; DIELECTRIC PROPERTIES; ELECTRICAL PROPERTIES; FIBERS; PHYSICAL PROPERTIES; SCATTERING; SIMULATION
Optional Information
- Notes
- 106 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses