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–plasma interactions, and laser-driven particle accelerators. It brings together approximately 80 researchers, faculty members, engineers, PhD students, and postdoctoral fellows. The LOA conducts research
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. Fieldwork will be funded by the ANR project. In general, the PhD student will adhere to the laboratory's internal regulations. They will be subject to enhanced medical monitoring. They will also undertake in
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is to study the structural dynamics of biological photoreceptors by either time- time-resolved cryo-electron microscopy or time-resolved X-ray crystallography in view of biotechnological applications
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ExperienceNone Research FieldPhysics » Surface physicsYears of Research ExperienceNone Additional Information Eligibility criteria A PhD in experimental physics and a background in the study of correlated-electron
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the scientific goals of the PhD. Interactions with the Berkeley team will be supported and facilitated by the IRL Centre Pierre Binétruy. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR9012
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of the professional environment: - Organization and functioning of higher education and public research; Operational skills: - Write reports or technical documents; - Use the computer tools necessary for the control
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-level electronic system to induce sufficiently strong anharmonicity, thereby enabling its manipulation and readout. To benefit from a more intense electromechanical coupling, we now aim to study the
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staff members (researchers, engineers, PhD students) and operates several major experimental facilities: LULI2000, Apollon, HERA, XCAN. The PhD student will join LULI's theory team (TIPS) and will work
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of about 10 nm in thickness, too thick for electronic tunneling effects. This PhD project aims to explore other ferroelectric-based devices that exhibit this type of double polarization hysteresis as a
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electron spin resonance STM (ESR-STM). A recent work[1] and measurements in the group, Fig. 1, have shown that spin-polarized and ESR-STM allowed to characterize the spin-excitation spectrum of individual Fe