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GRADUATE STUDIES
- • STUDYING AT MANUTECH SLEIGHT
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MSc in Optics, Image, Vision, Multimedia (OIVM)
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iPSRS - Intelligent Photonics for Security, Reliability, Sustainability and Safety
- PSRS - Partner universities
- RADMEP+ - Radiation and its Effects on MicroElectronics and Photonics Technologies
- COSI - Computational Colour and Spectral Imaging
- IMLEX - Imaging & Light in Extended Reality
- AIMA - Advanced Imaging & Material Appearance
- PE - Photonics Engineering
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iPSRS - Intelligent Photonics for Security, Reliability, Sustainability and Safety
- MSc in Computer Science
- MSc in Health Engineering
- Engineering schools' research tracks
- Doctoral studies
- Training through research
- Opportunities
- Admission and aid
- OPTICA and SPIE Student Chapters
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RESEARCH & INNOVATION
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SCIENTIFIC EVENTS
- News and about
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The SLEIGHT Science Events
- SSE #17 - SLEIGHT in 2027
- SSE #16 - "AI for image analysis in the medical and biomedical domains"
- SSE #15 - SLEIGHT in 2026
- SSE #14 - Metallic surfaces: texturing, functionalization, appearance"
- SSE #13 - SLEIGHT in 2025
- SSE #12 - Imaging in Manutech-SLEIGHT
- SSE #11 - SLEIGHT in 2024
- SSE #10 - Sustainable Surface Engineering
- SSE #09 - SLEIGHT in 2023
- SSE #08 - Photonics for Health
- SSE #07 - SLEIGHT in 2022
- SSE #06 - Machine Learning
- SSE #05 - SLEIGHT in 2021
- SSE #03 - SLEIGHT in 2020
- SSE #02 - Material Appearance
- SSE #01 - Topics and stakeholders
- Manutech-SLEIGHT Awards
- Scientific conferences
- Events in partnership with Manutech-SLEIGHT
- CAMPUS LIFE
- ABOUT US
Adriana Morana graduated from the University of Palermo (Italy) in 2010 and obtained her PhD in 2013 through a joint supervision (cotutelle) between the University of Palermo and Jean Monnet University. Since then, she has been working at the Hubert Curien Laboratory and is currently professor at Jean Monnet University.
MAIN REPONSABILITIES
- Coordinator of the MSc in Optics, Image, Vision and Multimedia – OIVM, co-accredited by Jean Monnet University Saint-Etienne, Institut d’Optique Graduate School – IOGS, Mines Saint-Etienne and École Centrale de Lyon.
TEACHING
- Bachelor degree in Physics
- MSc in Optics, Image, Vision, Multimedia – OIVM
- MSc OIVM - Photonics Engineering - PE track
- MSc OIVM – Radiation and its Effects on MicroElectronics and Photonics Technologie – RADMEP+ track
- MSc OIVM - Intelligent Photonics for Security, Reliability, Sustainability & Safety - iPSRS track (since 2020)
- Doctoral school: ED 488 SIS (Science, Engineering, Health)
Language: French and English / Teaching hours : ~192 h / year
COURSES
- Geometrical Optics
- Interference and Diffraction
- Laser
- Guided Optics
- Advanced Photonics Technologies (Optical Fiber Sensors)
- Radiation Effects on Photonics Technologies
- Spectroscopy
PUBLICATIONS
- A. Morana, E. Marin, L. Lablonde, T. Blanchet, T. Robin, G. Cheymol, G. Laffont, A. Boukenter, Y. Ouerdane and S. Girard, ‘Radiation Effects on Fiber Bragg Gratings: Vulnerability and Hardening Studies’, Sensors, vol. 22(21), 8175 (2022): DOI 10.3390/s22218175
- S. Girard, A. Morana, A. Ladaci, T. Robin, L. Mescia, J-J. Bonnefois, M. Boutillier, J. Mekki, A. Paveau, B. Cadier, E. Marin, Y. Ouerdane, A. Boukenter, ‘Recent advances in radiation-hardened fiber-based technologies for space applications’, Journal of Optics, 20(9), 093001 (2018): DOI 10.1088/2040-8986/aad271.
- A. Morana, S. Girard, E. Marin, C. Marcandella, P. Paillet, J. Périsse, J.-R. Macé, A. Boukenter, M. Cannas, and Y. Ouerdane, ‘Radiation tolerant fiber Bragg gratings for high temperature monitoring at MGy dose levels’, Optics Letters, OSA, vol. 39(18), pp. 5313-5316 (2014): DOI 10.1364/OL.39.005313.
PATENTS
- Method of producing a treated optical fibre for a radiation-resistant temperature sensor, filed on December the 16th 2013: n° registration = 13 62691. (UJM-AREVA)
FACULTY PROFILE
CURRENT POSITION
Professor
LABORATORY
Hubert Curien Laboratory (UJM, CNRS, IOGS)
INSTITUTION
Jean Monnet University
MANUTECH-SLEIGHT
Member of the Educational Committee
RESEARCH INTERESTS
Radiation vulnerability of optical materials, photonic components and systems, optical fiber, fiber sensor technologies, radiation-induced defects, spectroscopy
Radiation vulnerability of optical materials, photonic components and systems, optical fiber, fiber sensor technologies, radiation-induced defects, spectroscopy