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the practical adoption of IBFD. In this postdoctoral project, you will investigate novel integrated microwave circuit architectures that address the front-end challenges of IBFD in MIMO systems. The research will
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, including: Designing and developing relevant silicon photonic integrated circuits (PICs). Preparing and taping out PIC designs for external fabrication (e.g., via Cornerstone, UK). Working with TNO
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advanced computational methods to uncover mechanisms of neural circuit repair and regeneration. The candidate will integrate large-scale transcriptomic and epigenomic datasets with state-of-the-art deep
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of and experience in design, fabrication and characterization of integrated photonics circuits. Expertise in the deposition of optical materials, in particular sputter deposition, will be a plus. Hands on
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industry. Our photonics research lab has set modern tools for the design, testing, and optimization of photonic circuits. It is open for collaboration with researchers with a background in basic research
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of quantum memory protocols in both bulk crystals and waveguide structures, design and integration of MW coils and circuits with photonic components, including optical resonators. The project aims to deliver
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an integrated beneficiation strategy that reduces operational costs, and energy consumption. This research aligns with broader goals of promoting circular economy practices and technological innovation in
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funded by MetaPix Center that aims to advance integrated photonics through the use of inverse design and heterogeneous integration. Who we are looking for The following requirements are mandatory
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. Researchers from the groups Electromagnetic, Integrated Circuits, Signal Processing Systems, Optical Communication, and Electronic Systems, work together to address research questions across these research
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neuromorphic synapses Electrically characterizing integrated circuits containing both electronic synapses and electronic neurons. Designing circuits to mimic machine learning models trained in silico. This work