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its diffraction pattern for a diversity of illuminations, as opposed to using imaging optics as one does in a microscope to create a real space image. While it is well understood how to do
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principles such as spatiotemporal symmetries and quantum mechanics. We explore how suitable system design and control over light-matter interactions can engage the conventional limits to nanophotonic and
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. In this project, we aim to overcome that limitation by integrating phase change materials into metasurface designs. These materials can be reversibly switched between crystalline and amorphous states
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the necessary methods & techniques in our group, and a PhD student or postdoc will be your daily supervisor. Working conditions At the start of the traineeship your trainee plan will be set out, in consultation
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simulations, you will learn all the necessary methods & techniques in our group, and a PhD student or postdoc will be your daily supervisor. Working conditions At the start of the traineeship your trainee plan