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structure analysis (X-ray diffraction and Rietveld refinement); • Electron microscopy and/or spectroscopic characterization; • Electrical and thermal transport measurements; • Thermoelectric
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characterization of FSS/metasurface-type devices made reconfigurable through the integration of phase change materials (PCM). Part of the role will also involve understanding the mechanisms underlying the insulator
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these heterostructures, the electronic properties are strongly affected by interactions at the interfaces between layers. Charge transfer between materials can modify the electronic density and create new electronic
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and extend these cryo-electronic platforms to demonstrate coherent charge and spin control in silicon quantum dot arrays. In particular, the project will focus on the implementation of coherent electron
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devices. Within this framework, LGP2 (Laboratoire de Génie des Procédés Papetiers – UMR CNRS 5518 / Grenoble INP – UGA) is in charge of a Work Package, dedicated to the formulation, processing, and printing
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lattices. • Implement and optimize RF reflectometry and dispersive sensing techniques for the measurement of complex admittance and charge susceptibility. • Design, characterize and improve microwave
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field of view (FOV), and multifocal capabilities. • Explore nonlocal coupling effects to enhance optical functionalities. 2. Fabricate and Characterize Prototypes: • Fabricate metasurface in CNRS
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-granulation technique. Objective of formulation is to adjust mechanical stability and conductivity. References 1. https://www.pepr-spleen.fr/projet/projet-e-cp/ 2. Renda et al. Catal. Today 2022, 383, 31–43
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characterization and iterative optimization to enhance device performance. The ICube Laboratory (UMR 7357) is a joint research unit under the supervision of the CNRS, the University of Strasbourg, and INSA