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and their dynamics in real time. This work will shed light on the interplay between ferroelectric order, interlayer excitons, and dielectric environment, revealing how local optical responses correlate
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of the appointment, providing the first empirical demonstration of the WaveGuard system. In addition to experimental work, the postdoc will contribute to the numerical design and optimization of the metamaterial
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of interest include: Robot modelling, Nonlinear and Optimal control, Reinforcement learning, and Data-driven modeling and control. The Post-Doctoral associate will be based at NYU Abu Dhabi and will directly
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in such materials. You will play a central role in imaging ferroelectric domains in a new class of 2D ferroelectrics using state-of-the-art cryogenic micro-spectroscopy techniques. This work involves
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have the opportunity to: Work on the optimization of high harmonic generation driven by multi-millijoule 2200 nm OPCPA. Design and refine a highly efficient X-ray spectrograph based on reflection zone
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: https://gdusson.perso.math.cnrs.fr/offre_postdoc.pdf The main objective of this postdoctoral position is to work on nonlinear model-order reduction, with a particular focus on the development and
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Inria, the French national research institute for the digital sciences | Pau, Aquitaine | France | about 2 months ago
to the governing equations obtained in the previous phase. This derivation is essential for computing the gradient of the misfit functional efficiently, enabling large-scale optimization. Following
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Job Description If you are an experimental physicist or optical engineer with a passion for nonlinear optics, quantum optics, and advanced fiber technologies, this is your chance to work at the
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side, you will investigate and develop data-driven methods for optimal and nonlinear control with a particular focus on dual control and on approaches to measurement scheduling and active sensing
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ecosystem. Key Responsibilities Develop and optimize lithographic patterning of nano- and meso-scale structures, such as gratings, waveguides, cavities, and metamaterials for quantum and THz devices Integrate