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structure, dynamics, and switching mechanisms at the nanoscale, including optical manipulation of polarization states. Design and execution of experiments demonstrating optical control of ferroelectric
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, Nonlinear and Complex Systems , Nonlinear Integral Systems, Classical and Quantum , Optical Physics , optics , Optics and Photonics , Optomechanics , Photoelectron spectroscopies , Photon-based Scattering and
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explicit control law off-line: for example, when the system to be controlled is subject to constraints, delays or nonlinearities. The theoretical foundations for MPC are, by now, mature and its applications
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is highly desirable. Research in the analysis and control of linear and nonlinear hyperbolic systems of PDE, in particular Maxwell’s equations. Candidates should have a strong background in PDE and
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We are looking for a Doctoral student to become part of our team in the Division of Systems and Control at the Department of Electrical Engineering. Join our innovative team and contribute
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on advanced nonlinear optics and ultrafast laser techniques. The experimental work will be carried out on a table-top HHG beamline, producing XUV pulses with durations in the tens-of-femtoseconds range
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We are looking for a postdoc to join our team at the Division of Systems and Control, Department of Electrical Engineering. Become part of our innovative group and contribute to exciting research in
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to polarization and nonlinear optical phenomena in measurement chains. Integrate and qualify optical and electronic components (PMTs, cameras, femtosecond lasers, filters, controllers, acquisition electronics
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from waveguides on the chip. By using the latest advances in electrooptic nonlinear materials, these waveguides can adjust the brightness and phase of the light at very high speed. The METAPIC project is
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processes, regularity theory of nonlinear degenerate and singular elliptic and parabolic PDEs, free boundary problems, optimal control of free boundary systems with distributed parameters. Current areas