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Université de Bordeaux
LabEx LAPHIACluster of Excellence
Cluster of excellence
 


Seminar_Matter waves and atomic interferometry : from concepts to applications_Philippe Bouyer_January 29, 2014LabEx LAPHIAle Wednesday 29 January 2014 from 13h15 to 14h15

In the framewok of the LAPHIA seminars, Philippe Bouyer will present his research work on matter waves and atomic interferometry : from concepts to applications. The LAPHIA seminar will take place at the Institut d'Optique d'Aquitaine (tramway B - Arts et Métiers - Amphi) from 1:15pm to 2:15 pm on January 29, 2014. A coffee break will be organized at 1:00 pm, you are welcome to join us.

Wednesday 22 January 2014 by BUE Anne-Lise. Last update Tuesday 07 July 2020
LAPHIA Seminar : Joris Lousteau, 14th Jan 2020, IOA, 11AMLabEx LAPHIA« Soft-glass optical fibres: A versatile photonic material platform for light generation and transmission from UV to mid-IR » 233 Kilo bytes

Joris Lousteau Department of Chemistry and Materials Engineering, Politecnico di Milano, Milan, Italy « Soft-glass optical fibres: A versatile photonic material platform for light generation and transmission from UV to mid-IR » Tuesday 14th Jan. 2020, 11:00 – 12:00 Institut d’Optique d’Aquitaine, Amphithéâtre Multicomponent glasses, also so-called “soft glasses”, offer an extended range of optical properties that outperform silica glass for a broad number of photonics applications. The implementation of these glass systems is particularly pertinent whenever requirements for long fibre lengths and high optical power operations are alleviated. To appreciate the prospects of these materials, we will initially highlight the key applications where soft-glass systems can truly impact on the operation performances of photonics device. We will then discuss into more details some recent results on the implementation of germanate, phosphate and chalcogenide glass fibres for the development of near-IR optical amplifiers/lasers and thermal imaging fibre bundles. A particular attention will be drawn onto the importance of the glass synthesis and fibre fabrication processes towards the industrial exploitation of these materials/fibres. REGISTRATION MANDATORY here below!

Friday 20 December 2019 by DA ROCHA Daniel.
7th LAPHIA Symposium: November 12-13, 2019LabEx LAPHIA

The 7th edition of the LAPHIA Annual Symposium will take place from 12 to 13 November 2019, at the Institut d'Optique d'Aquitaine. Registration is open!

Thursday 01 August 2019 by DA ROCHA Daniel. Last update Monday 11 November 2019
LAUNCH OF THE CALL FOR PROJECTS AAP2020LabEx LAPHIA

The LAPHIA launches its last Call for Proposals (AAP2020) concerning research and valorization projects. Find all the information online: http://idex.u-bordeaux.fr/LAPHIA-Research-Calls Deadline for applications, September 15 th , 2019 (midday) Three types of financing are proposed Risky Project (RP) 
 Passport Project (PP) 
 Research Mobility Project (RM) for teams Agenda AAP2020 Launch of the...

Thursday 01 August 2019 by DA ROCHA Daniel. Last update Thursday 01 August 2019
IMS / LAPHIA Seminar : Damien BIGOURD, 26th June, IMS, 10AMLabEx LAPHIA

Le 26 Juin 2019, Amphi JP DOM , IMS , 10h SEMINAIRE Sources à haute cadence de l’infrarouge proche à l’infra-rouge moyen et lointain Damien BIGOURD FEMTO-ST (UMR-CNRS 6174) Résumé : Les sources photoniques sont en évolution permanente afin d'améliorer leurs spécificités pour viser plusieurs applications et études fondamentales. Les besoins sont divers et directement liés aux applications...

Wednesday 19 June 2019 by DA ROCHA Daniel.
LP2N / LAPHIA SEMINAR - Thursday 16 May, 11:45, IOA - Juan José SáenzLabEx LAPHIA

Asymmetry and Spin-Orbit interactions in light scattering by high refractive index particles Juan José Sáenz ,1,2,* 1 Donostia International Physics Center, 20018 San Sebastian, Spain 2 IKERBASQUE, Basque Foundation for Science, 48013 Bilbao, Spain * juanjo.saenz@dipc.org Thursday 16 May 11:45 AM, IOA Light spin-orbit angular momentum (AM) coupling phenomena are receiving an increasing...

Wednesday 24 April 2019 by DA ROCHA Daniel.