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Are you passionate about shaping the future of AI infrastructure? Join us to develop innovative photonic technologies that enable ultra-fast, energy-efficient, and highly scalable optical
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final steps towards implementation in an integrated photonic platform, for which an additional PhD candidate and postdoc will join the team. Within the team you will closely collaborate, but you will also
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infrastructure? Join us to develop innovative photonic technologies that enable ultra-fast, energy-efficient, and highly scalable optical interconnects for next-generation AI compute clusters. Information
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postdocs in the SteeleLab in the Quantum Nanoscience Department in Delft. You will meet regularly with your supervisors and other team members, and also be encouraged to develop and explore your own ideas
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holography, structured-light and fringe projection, deflectometry, pattern tracking, high-speed imaging and thermography. Complementary photonic sensing approaches, such as fibre Bragg grating sensors, may
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elements should be used to generate the required radiation? how do we generate as many ‘usable’ photons from the plasma as possible? What are the optimal laser and target properties? Project goal The goal
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laser light into the desired photons. You will join an interdisciplinary team of several PhD students and postdocs in ARCNL’s highly cohesive Source Department and have as an objective to design & execute
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. You will work alongside PhD candidates, postdocs, and students in a supportive environment where scientific curiosity is actively encouraged. We value open discussions, shared progress, and celebrating
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conditions. The team is young, interdisciplinary, and collaborative. You will work alongside PhD candidates, postdocs, and students in a supportive environment where scientific curiosity is actively encouraged