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optoelectronic characterization of ferroelectric domains and excitonic properties, including micro-photoluminescence, Raman spectroscopy, SHG, and near-field optical methods. Investigation of ferroelectric domain
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close mentorship The specific topic will be defined with the student. Projects will focus on the monitoring and modeling of biomanufacturing processes. Specifically, on the use of Raman Spectroscopy and
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démontré par l'équipe, combinant des potentiels optiques dépendants du spin et couplage Raman modulé, permettant d'induire un couplage spin–orbite effectif. L'objectif principal sera d'identifier et de
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. We aim to combine Raman spectroscopy, a powerful label-free analytical technique that measures the molecular composition of tissue by using light to excite molecular vibrations, with imaging techniques
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. Playford, H.Y., Ravel, B., Levin, I., “Incommensurate modulation and competing ferroelectric/antiferroelectric modes in tetragonal tungsten bronzes,” Chem. Mater., https://doi.org/10.1021/acs.chemmater
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Your Job: Conducting in-situ and in-operando Raman experiments on glass corrosion Developing and constructing fluid cells with integrated alpha radiation sources Performing post-mortem analyses
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. Applications are invited for a full-time Postdoctoral Researcher in development of plasmonic nanopore for single molecule sequencing by surface enhanced Raman spectroscopy (SERS) position under supervision by
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infrared (OPTIR) and Raman spectroscopy. The scholarship is two years full-time with access 15 April, 2026 or by agreement. The deadline for applications is 20 February 2026. The scholarship is placed within
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that result from the interplay of magnetism, dimensionality, and topology. The primary experimental tools used will be neutron and Raman scattering, complemented by electron microscopy, electron energy loss
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of view (Raman spectroscopy, scanning electron microscopy, atomic force microscopy, etc.); - Participate in progress meetings and report writing. The work will be carried out at the Laboratory