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Chercheurs invités

Chercheurs et professeurs invités par le Labex ACTION

 Huazhong University of Science and Technology, China

Guoping Liu (2016 - FEMTO-ST)
MOE Key Laboratory of Fundamental Physical Quantities Measurement, School of Physics, Huazhong University of Science and Technology, China

Article in Optics Express 2016: "Universal nonlinear scattering in ultra-high Q whispering gallery-mode resonators"
Guoping Lin, Souleymane Diallo, John M. Dudley, and Yanne K. Chembo

Maryam Ghandchi Tehrani (2016 - FEMTO-ST)
Lecturer in Active Control spécialiste du Energy harvesting
Univ. of Southampton (UK)
Contribution au projet de "récupérateur d’énergie à base d’un réseau quasi-périodique à transduction linéaire et non-linéaire"

“Effect of Mistuning on the Harvested Energy from a Nonlinear System with Weak Coupling”, DINAME 2017, São Sebastião, São Paulo, Brazil, 2017
M. Ghandchi Tehrani, N. Kacem and N. Bouhaddi

Stéphane CHRETIEN (2016 - FEMTO-ST)
Senior researcher, spécialiste du Big data
National Physical Laboratory (London, UK)
- Big Data spécifique aux données issues des réseaux de capteurs sans fil,
- Big Data « online » : analyse de données et prise de décision décentralisées.

Prof. Pasi KALLIO (2016 - FEMTO-ST)
Autonomous systems for manipulating µ- nanoscale targets
Department of Automation Science and Engineering, Tampere University of Technology, Tampere, Finland

Conférence "Microrobotics and Microfluidics in Automatic Stimulation and Characterization of Stem Cells and Fibrous Materials" (FEMTO-ST/ENSMM, 16.06.2016)

In this talk, Prof. Kallio gave an overview of his research group’s research activities on automatic microrobotic and microfluidic systems in handling, stimulation, treatment and characterization of micro-scale objects and samples.
The main activities include microsystems in stem cell studies and microsystems in wood fiber studies.

Struk PRZEMYSLAW (2016 - FEMTO-ST)
Integrated optics devices
École polytechnique de Silésie (Politechnika Śląska, Pologne)

Contribution au projet ENDO-MOEMS du Labex ACTION : réalisation de la tête optique de l’endomicroscope OCT (Optical Coherence Tomography) conçu pour l’endoscopie digestive, qui est le coeur du Démonstrateur 4 du Labex Action.
Invited by Christophe Gorecki at FEMTO-ST 

Prof. Diederik DEPLA (2016 - FEMTO-ST)
Spécialiste de la pulvérisation en conditions réactives (solid state sciences)
Université de Gand, Belgique

Contribution au projet SCAN (Simulation de la Croissance de films nANostructurés) du Labex ACTION.
Objectif : modéliser les caractéristiques du procédé de pulvérisation réactive mis en oeuvre lors de l’élaboration de couches minces architecturées à base d’oxydes métalliques.

Invited by Nicolas Martin at FEMTO-ST


Dr Jérémy BUTET (2016 - ICB)

Expert en plasmonique nonlinéaire
Ecole Polytechnique Fédérale de Lausanne (Nanophotonics and Metrology Laboratory)
Contribution au développement de Sources plasmoniques nonlinéaires (conception et en modélisation numérique de la réponse nonlinéaire des nanostructures plasmoniques)

Invited by Benoit Cluzel at ICB

 

Roberto CAPUTO (2015 - LNIO/ICD)
University of Calabria, UNICAL
Contribution to the developement of an integrated strain sensor
Invited by Thomas Maurer at LNIO - ICD

"Two-color single hybrid plasmonic nano-emitters with real time switchable dominant emission wavelength", Nano Letter, 2015, 15 (11), pp 7458–7466
Zhou X, Wenger J, Viscomi FN, Le Cunff L, Béal J, Kochtcheev S, Yang X, Wiederrecht GP, Colas des Francs G, Bisht AS, Jradi S, Caputo R, Demir HV, Schaller RD, Plain J, Vial A, Sun XW, Bachelot R.

Josep Miquel Jornet (2016 - AIM2014/FEMTO-ST)
Assistant Professor, Department of Electrical Engineering
University of New York, Buffalo

Workshop AIM 2014 "Programmable matter (intelligent and reconfigurable)"
The programmable matter refers to matter which can change its physical properties through a program. For example, it can change its optical properties (change colour), shape (from square to
circle), density and so on. This proposal treats about programmable matter which is intelligent and reconfigurable. It is reconfigurable because the modules can reconfigure themselves, and is intelligent because individual modules function as agents to accomplish some goal. As an example, an object would need to change its shape from cube to line in order to pass through a hole of a wall.

Invited by Julien Bourgeois and Eugen Dedu at FEMTO-ST

 

 

 

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