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low-temperature experiments involving magnonic systems and microwave circuits. The project will investigate the properties of YIG microstructures coupled to a superconducting resonator at very low temperatures
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component—as low-carbon binders. Recent work by the team has shown that bubbles naturally concentrate around grain contacts and form liquid bridges there, enabling the binder to be deposited precisely where
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2030), dedicated to the development of high-performance cryogenic technologies for quantum technologies, and more specifically to ultra-low-temperature thermometry in the millikelvin range
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requires very long simulation times which may only be achieved using frugal numerical approaches or reduced-order models. Below are listed some possible activities of the successful candidate. Some of these