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PhD Position: High resolution Transmission Electron Imaging in Scanning Electron Microscopy Job description Scanning Electron Microscopy (SEM) is one of the most widely used imaging tools in
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focused on the development of next-generation compact hyperspectral spectropolarimetric cameras. Hyperspectral imaging enables simultaneous acquisition of spatial and spectral information, supporting
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households or companies. But energy data is not like images or text: it consists of time series living on a physical network, governed by power-flow equations. Off-the-shelf generative models produce data
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developing an integrated spectropolarimeter in which photonic-crystal filter arrays are combined directly with an imaging detector. This approach could reduce instrument size and enable more scalable
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will be integrated into the TIFUUN instrument, a new superconducting imaging spectrometer for terahertz astronomy. Beyond laboratory development, you will actively participate in the commissioning and
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | 2 months ago
incorporatesrobust whole-body control policies. This PhD project will leverage recent co-design approaches and modern control methods such as RL to go beyond component-level innovations. It aims at developing a new
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on the implications of our findings. Qualified individuals will have a strong aptitude to reformulate open questions; devise creative solutions; deliver concise, rigorous prototype implementations; and clearly
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on the implications of our findings. Qualified individuals will have a strong aptitude to reformulate open questions; devise creative solutions; deliver concise, rigorous prototype implementations; and clearly
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climate control to direct crop-centric control. This paradigm shift relies on breakthroughs in microclimate sensing, interpreting crop performance by integrating sensor data at different temporal and
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science and engineering. The faculty engage in fundamental and applied research and education in lasers, optical fibers, semiconductor and integrated photonic devices, nonlinear and quantum optics, imaging