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ranges, fibre-optic sensors, lidars, optical communication systems and quantum technologies. In these areas, the section is developing laboratory test setups and simulation tools. Depending on your
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mechanics, optical components, thermal management, and tracking or control mechanisms. Use existing simulation tools (e.g., ray-tracing, CFD, thermal and structural solvers) to analyze optical performance
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nanostructures for photonic integration in smart vision systems. In particular, he/she will be responsible for the theoretical study and development of codes and numerical models for computer simulation and design
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quantitatively experimental data in different polymeric systems with different self-poisoning mechanisms, that classical theories were unable to handle. Monte Carlo and Molecular Dynamics simulations will also be
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/optical ray tracing simulation software, e.g., Wireless Insite, Zemax Proven track record of publications in relevant IEEE journals and conferences The candidates will be considered until the position is
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in all-optical ultracold atom-ion hybrid experiments inside a multimode confocal cavity in the Department of Physics (Ref.: 533916), to commence as soon as possible for 12 months, with the possibility
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of integrated photonic antennas and metalenses. Responsibilities will include the fabrication process in the C2N cleanroom; the design and simulation of devices; and optical characterizations for design
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making that incorporate dynamic scene features, pose tracking, and eye-tracking data collected from an immersive police shooting simulator. The position is based at Indiana University Bloomington, with
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on systems developed by grazing angle deposition (oxides and metals) for optical, optronic, and thermochromic applications. Where to apply Website https://oficinavirtual.uca.es/oficinaVirtual
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experimentally characterized. These optical structures will be designed using electromagnetic and ray-tracing simulators and manufactured using two-photon polymerization-based 3D printing techniques. Where