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design and vacuum technology. Electronics and instrumentation. Experience with laser systems and optical setups. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR8552-THIJAC-001
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walls of the vacuum chamber. This layer plays a dual role: it acts as a getter for oxygen, reducing the impurity content in the plasma, and it minimizes plasma-wall interactions, thereby reducing both
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characterization of materials. • Development and operation of experimental test benches under high-vacuum conditions. • Definition of test protocols, including detailed test procedures and acceptance criteria
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Higher Education and Research (MESR). The PhD project aims to develop and implement a time-resolved tip-enhanced photoluminescence setup on a low-temperature (5 K), ultra-high-vacuum scanning tunneling
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, leading to a unified methodology that transforms the Ti³⁺ signal from a qualitative fingerprint into a quantitative indicator of carrier mobility and lifetime, applicable under vacuum, under operando
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participate in the experimental work of the C2N STM group (comprising four permanent staff members). This work will focus in particular on the growth of materials (graphene, NbSe2) under ultra-high vacuum
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access the strong-field quantum electrodynamics (QED) regime using ultra-high-power laser systems. In this extreme regime, the quantum vacuum and matter exposed to ultra-intense electromagnetic fields
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spectrometers and X-Ray Diffraction apparatus). Our laboratories are equipped with individual fume hoods allowing the secure handling of various reagents and gases, heating devices and vacuum glassware, and are