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Nanoelec project, which aims to bring a 300 mm CMOS-compatible integrated photonics platform to technological maturity. In this context, one of the key technological challenges is the plasma patterning
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microstructured YIG and investigate photon–magnon coupling. • Measurement of superconducting microwave circuits. • Low-temperature measurements of coupled magnonic and microwave photon systems. Institut Néel is a
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collaborative research project on the topic of neuromorphic photonics using organic materials. Research activities include: - Design and modeling of integrated photonic components using electromagnetic simulation
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solid state physics - superconductivity/ quantum devices - clean room micro-nano fabrication - optical setups in a weak photon flux regime - low temperature and/or high frequency transport measurements
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on the ultra-stable laser stations of the REFIMEVE infrastructure. The research will focus on developing experimental methods to exploit REFIMEVE's photonic and metrological systems for innovative measurement
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of these interactions—is essential. One promising hybrid quantum system is cavity magnomechanics, where magnons serve as intermediaries between photons and phonons. Magnons are already used in classical applications