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lasers with high-average and high-peak power Building of optical cavities Running existing simulation codes in Julia and processing their results. Helping to develop new models and algorithms to simulate
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experience with electromagnetic simulation software for both optical (PIC) and microwave (MMIC) applications (Lumerical, Comsol, Tidy3D, CST, HFSS, or similar). Strong experience with optical experimentation
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of experiments and simulations using advanced equipment and complex research techniques. Collect, analyze, evaluate, and interpret research data. Plan and execute experimental protocols with precision
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efficient material processing techniques that combine high optical quality with utmost precision through direct laser writing. This capability, responding to challenges in nanofabrication, could unlock new
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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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Description 1. Research scholarship for one candidate holding a Doctoral degree is open, in the framework of project with reference COMPETE2030-FEDER-00842900, entitled “In vivo retinal optical coherence
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Organic glasses offer tunable optical properties, flexibility, and low weight — making them vital in optoelectronics and pharmaceuticals. Yet accurately simulating their dynamics, particularly the molecular
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Carlo and Molecular Dynamics simulations will also be carried out to reveal the competing kinetic pathways at the growth front. The experimental part will use multiple experimental methods, including but
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conditions are particularly suitable for detailed comparisons with high-fidelity numerical simulations. Additionally, LEGI lab has a similar reactor to that of LMFL (operational and fully instrumented
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variety of content such as advertising copy, website messaging, magazine articles and speeches. The ideal candidate can adjust their writing style for diverse audiences and has a sharp eye for detail when