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of the thesis. The CEMHTI - CNRS laboratory (UPR 3079) is offering a thesis topic in the numerical modeling of electromagnetic waves in heterogeneous media. This topic aims to understand how textural parameters
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Electromagnetic Waves in Complex Media Team (eWAVES) of the IETR/CNRS. IETR is one of the leading EU research laboratories in electronics, wireless communications, and digital technologies. Our research activities
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electromagnetic sources with two different technologies: (i) one for surface medical applications, i.e., cutaneous or subcutaneous electroporation, (ii) the other will use a device inducing a focusing of the
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isotopes for environmental and nuclear medicine applications. While laser ionization is selective according to atomic number, the application of an electromagnetic field separates isotopes according
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probes with a solid background in general physics, electromagnetism and light-matter interaction. He/she will have strong skills in experimental research, and prior experience in optical microscopy and/or
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PhD student on thoretical study of acoustic wave localization in two dimensional metamaterials (M/F)
allow this phenomenon to be observed. A good theoretical knowledge of wave propagation (acoustic, elastic, electromagnetic or in quantum physics) is expected. Requirements Research
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interactions of semiconductor nano-sensors with their surrounding bio-molecular environment under the action of intense electromagnetic fields (i.e. lasers) for molecular recognition in medical applications
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unit (UMR 5822) of CNRS/IN2P3 and Université Claude Bernard Lyon 1 (UCBL). IP2I is a founding member of CMS and played a key role in the development, installation and commissioning of the electromagnetic
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of electromagnetic waves emitted by wave turbulence generated by a beam of electrons ejected by the sun. This subject has major scientific and societal implications. - Use high-performance numerical simulations
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LevelMaster Degree or equivalent Skills/Qualifications - scientific education in general physics, photonics, electromagnetic waves, optics, magneto-optics, plasmonics, near-field microscopy. - ability