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project is to overcome these limitations through the design of a flexible, quantum sensing foil based on an atomically-thin two-dimensional (2D) material. Our approach consists in using optically-active
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Processes (https://simap.grenoble-inp.fr ) - is a multidisciplinary laboratory with more than 200 participants from chemistry, physics, materials and fluid mechanics. It is one of the leading laboratories in
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on microfluidic experiments using micro-fabricated porous media, which will be supplemented by reactive flow experiments on columns of granular material to validate or identify the limitations of the 2D approach
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goal of the PhD will be to show true indistinguishable photon emission between two color centers integrated in spatially separated silicon photonic cavities. Where to apply Website https://emploi.cnrs.fr
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, cosmetics, sustainable materials, and biomedical applications. Tuning surfactant nature or concentration drastically changes foam and bubbly flow properties—bubble velocity, coalescence, foam rheology
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-Saclay region and is easily accessible by public transportation from Paris. More information is available at https://www.ip-paris.fr . The candidate will join the doctoral school of the Institut
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of emerging quantum networks. In the last few years, color centers in the 2D material hexagonal boron nitride (hBN) have established them-selves as excellent quantum emitters, bringing new perspectives
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letter outlining the candidate's motivation; academic transcripts from the first and/or second year of the Master's programme, or from an engineering school. Website for additional job details https
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-resistive sensors especially suited to 2D materials whose orbital currents depend on the carrier density (tuned by controlling an electrostatic gate). With this method we have recently observed the anomalous
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FieldPhysics » AcousticsYears of Research ExperienceNone Research FieldEngineering » Materials engineeringYears of Research ExperienceNone Additional Information Website for additional job details https