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of spectral diffusion on the optical linewidths will be rigorously characterized, along with the photo-dynamics of the individual emitters under optical resonant excitation. The second goal will be
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microscopy techniques to localize the key marker proteins identified. In a second phase, the postdoctoral fellow will identify the molecular mechanisms underlying the morphogenesis of T-tubules and the SR
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second theme covers activities falling under the broad umbrella of "nanosciences." Here, the focus is on fundamental properties that emerge when an object's dimensions approach certain characteristic
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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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), and the PhD student will be involved in several collaborative projects. During the second year of the thesis project, the work will be carried out in close collaboration with our colleagues
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effects, such as 2D/3D propagation and beam speckle patterns, which remain largely unexplored because they require significant simulation capabilities. This thesis aims to conduct a systematic kinetic
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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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characterisation platform to relate the observed dynamics to leaf anatomy. The second part will focus on developing biomimetic microfluidic devices that reproduce the main hydraulic properties of leaves under
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parallel synthesis of digital polymers. The polymers formed will be characterized by HPLC, GPC, NMR and MS. The 2D and 3D organization of these polymers will also be part of the objectives of the thesis
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major obstacle to the acceptance of occasional PD events in insulation systems. The second challenge is to ensure the robustness of the aging laws under PD conditions, across varying temperatures and