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Join us for an exciting and excellent Doctoral student journey to create the future of optical communications and sensing! About us At the Department of Electrical Engineering research and
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physics, quantum optics, exciton–polaritons, light–matter interaction, numerical simulations, or quantum modelling is meritorious. Willingness to work in an inter-cultural, international, and diverse group
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us, research and education are conducted with an eye towards the future. Our proximity to the business world, both locally and globally, gives us a wide reach and the ability to create change
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for high-aspect-ratio vertical interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and
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interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and sustainability: less material waste, better energy
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, and system-level performance evaluation. The candidate will develop a hybrid simulation framework and prototype optical switching solutions to support future quantum networking and distributed quantum
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. Particular emphasis will be placed on scientific ability within the subject area. The following knowledge areas will form the basis for assessment: Quantitative remote sensing, including optical and radar data
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20 Jun 2026 Job Information Organisation/Company KTH Royal Institute of Technology Research Field Engineering » Electrical engineering Engineering » Other Physics » Electromagnetism Physics » Optics
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performance, etc.). In-situ optical measurements, Raman, AFM and operando TEM (with DC2) will be used to detect the mechanical adaptability of a polymer during Zn plating, while MD simulations (with DC5) and
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facilities. Minimum 5 years data analysis experience with Matlab and/or Python. Knowledge of non-linear optics, THz generation, THz characterization and laser beam diagnostics. Experience with laser timing