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3 tenure track position at FEMTO-ST

In 3 of its strategic research priorities: micro-nanotechnologies, artificial intelligence and sustainable development.

A Tenure Track position at the Université Marie et Louis Pasteur (UMLP) in microtechnology for health. The person recruited will be based at FEMTO-ST in the MN2S department.

A Tenure Track position at SUPMICROTECH-ENSMM in Explainable and Physically-Informed Artificial Intelligence for data-driven modeling of complex dynamic systems. The person recruited will be hosted at FEMTO-ST in the AS2M department

A Tenure Track position at UTBM on Digital twins for modern power electronics applied to emerging energy systems. The person recruited for this position will be based at FEMTO-ST, in the Energy department.

The Tenure Track position is a new way of recruiting university professors in France. Recruitment is based on a research and teaching project submitted by a PhD holder. Each successful candidate will sign a Tenure contract lasting between 3 and 6 years. At the end of this period, and after evaluation of the CPJ's professional merit by a tenure commission, the CPJ will be recruited as a full-professor. Each CPJ will benefit from FEMTO-ST's research infrastructures, with its 10 shared platforms, and support from the ANR (French national research agency) with a 200,000 euros grant, which may be supplemented by additional funding (from the Region, etc.).

Join us in Besançon or Belfort and become part of one of the largest CNRS public research laboratories in engineering and computer sciences, through the three regional universities: Université Marie et Louis Pasteur, SUPMICROTECH-ENSMM or Université de Technologie de Belfort-Montbéliard.

For more information, visit the website  :

https://www.femto-st.fr/en/job-training-thesis/associate-professors-prof...

  • IEEE ICEMS Conference : Best paper award

    Researchers from SHARPAC team/ENERGY department of FEMTO-ST institute received the Best Paper Award at the IEEE International Conference on Electrical Machines and Systems for their work on the influence of electrical conductivity on eddy-current losses in electrical machines.

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  • Joint laboratories CNRS-Companies 2021

    FEMTO-ST and AUREA Technology honored at the LAB COM CNRS event in Paris on November 29 and 30

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  • Nanorobotics of the future: FEMTO-ST enters the 4th dimension

    For the first time, nanorobotic structures have been realized by folding in 3 dimensions a multilayer membrane and proposing their actuation by an electro-thermo mechanical principle.

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  • Chaos and rogue waves in a supercontinuum laser

    In collaboration with the Universities of Tampere, Aston and ICB laboratory, FEMTO-ST researchers have made significant headway in the ongoing effort to understand the ultrafast chaotic nature of lasers, elucidating for the first time their noise-like pulse operation.

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  • Julio Andrés Iglesias Martínez receives the Best Student Award at IEEE Ultrasonic Symposium

    His work consists in achieving three-dimensional phononic crystals at the micro-scale with record band-gap width.

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  • Lessons on textile history and fibre durability from a 4,000-year-old Egyptian flax yarn

    Published in the journal Nature Plants, work involving FEMTO-ST scientists is helping to propose ever more efficient and resistant materials based on flax fibers.

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  • Programmable matter: world record attempt

    A FEMTO-ST research team is trying to get the record for the largest number of autonomous light blocks assembled in a structure approved by the "Guiness World Record".

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  • Rodolphe Boudot receives the 2020 EFTF Young Scientist Award

    The IEEE EFTF-IFCS 2021 is a joint conference of the European Frequency and Time Forum and the IEEE International Frequency Control Symposium. The 2021 joint conference, originally planned for Paris in April, has been converted to a virtual conference from 7th to 17th July, 2021

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  • Giacomo Clementi, grand prize i-PhD

    For his work on Lithium Niobate (LiNbO3), which has led to the design of original and efficient devices for the recovery of vibratory energy by the piezoelectric effect, in particular for connected objects.

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  • Understanding energy transfers during photosynthesis

    Using three pigments manipulated by scanning tunneling microscopy, researchers from IPCMS and FEMTO-ST are studying energy transfers between molecules to gain a finer understanding of the photosynthesis mechanism in plants. This work is published in Nature Chemistry.

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