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Field
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demonstrated skills in the following areas: (i) Fabrication of 2D materials based nanodevices using exfoliation, transfer, optical and electrical beam lithography (EBL). Strong command of EBL is required. (ii
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create EUR’s distinctive and recognizable profile. From these values, with a broad perspective and with an eye for diversity, different backgrounds and opinions, our employees work closely together
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Linear and nonlinear photonic device testing Finite element analysis (FEA) Micro‑ and nano‑fabrication Knowledge in quantum optics/physics is a strong plus Qualifications: PhD required A combination of
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insights and continuum-scale thermal management strategies. In particular, the postdoctoral researcher will: Develop and apply phonon Boltzmann Transport Equation (BTE)–based models to capture non-diffusive
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storage, and optics. From AI modelling of materials and biological complexity to the design of multifunctional micro- and nano systems, we combine theory, fabrication, and innovation to tackle challenges in
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large-scale numerical simulations to design a laser-based optical system capable of efficiently generating electron-positron pairs through the collision of structured laser pulses. The research liesat
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, chemical engineering, or a related discipline Additional Qualifications Proficiency in experimental measurements of optical properties of materials, including (for example) spectroscopy, light scattering
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(baseline 6-element prototype at Sector 25 to ~18 analyzer elements), mechanical/optical layouts, tolerances, alignment strategy, and stability requirements, detector, motion, and sample environment
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are looking for candidates with interests in quantum mechanical condensed matter theory including: strongly correlated electron systems & mesoscopics, topological phases, ultracold atomic gases, quantum optics
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properties of vdW materials, from macroscopic crystals to monolayers, using state-of-the-art optical tools. We will focus on transition-metal dichalcogenides (TMDCs) and perform a comprehensive study of how