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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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levels of the vascular network will be investigated. Complementary characterisation using X-ray tomography and environmental scanning electron microscopy may also be carried out on the Institute's
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family of single photon emit-ters in hBN with excellent properties in terms of brightness, coherence and reproducibility. These emitters can be locally created using an electron beam in a scanning electron
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width: discrete frequency comb ver-sus continuous spectrum, and the presence or absence of spectral dispersion. Added to this are kinetic effects (electron trapping, plasma wave broadening) and geometric
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from the cosmic microwave background and free electrons present in the Universe. This interaction, known as the Sunyaev-Zeldovich (SZ) effect, appears in two main forms: the thermal SZ effect, caused by
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well as knowledge in analog and/or digital electronics. We also expect that the candidate will be a team-player, able to organize his.her own planning and work, and open to critical discussions about the project
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data processing descriptions or mathematical formulas. In contrast, combining LLMs with computer vision provides a more flexible framework for understanding and reproducing the computational pipelines