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an access to comb sensing and computing function through single device element. So far, our team has also developed reservoir computing measurement setup based on microwave optomechanical detection scheme and
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photonic quantum devices for a heterogeneous quantum network, including but not limited to superconducting qubits, microwave-optical quantum transducers, etc. The postdocs will design the devices, fabricate
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to substantially advance this new qubit platform by realizing high-fidelity two-qubit gates. The postdoc will design single electron qubit devices, fabricate them in CNM cleanroom, and characterize them in CNM
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. The postdoc will join an interdisciplinary program that combines quantum sensing instrumentation, surface and interfacial chemistry, and the physics of the target systems, with current directions including
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angle-resolved photoemission spectroscopy (ARPES). We have immediate need for enthusiastic postdocs to synthesize novel quantum anomalous Hall phases by MBE, characterize altermagnets and p -wave magnets
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Scientist 51 Faculty of Physics Job vacancy starting: 01.11.2026 | Working hours: 40.00 | Classification CBA: §48 VwGr. B1 lit. b (postdoc) Limited contract until: Job ID: 6040 Explore and teach
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expanded to investigate the efficiency of other electricity-based heating solutions such as microwave heating or electro-acoustic heating. At TU Delft, the modelling work will be accompanied by another PhD
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parallel, the rare-earth solid-state system will be coupled to microwave resonators to explore future connections to superconducting qubits. The project will conclude with a demonstration of quantum gate
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with complementary techniques such as Kelvin probe force microscopy, scanning microwave impedance microscopy, cathodoluminescence, Raman spectroscopy, and electron microscopy to connect local chemical
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try again. UiO/Anders Lien 1st August 2026 Languages English English English Postdoctoral Research Fellow position in Microwave Micro-Electro Mechanical Systems Apply for this job See advertisement