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Description The International Max Planck Research School for Chemistry and Physics of Quantum Materials is a joint PhD program between the Max Planck Institute for Chemical Physics of Solids in
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Multiple PhD Positions in Fundamental Physics and Quantum Dynamics (m/f/d) The International Max Planck Research Schools for Quantum Dynamics (IMPRS-QD) and for Precision Tests of Fundamental
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16 Sep 2025 Job Information Organisation/Company Max Planck Institute for the Physics of Complex Systems Research Field Physics » Quantum mechanics Physics » Solid state physics Physics » Optics
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Max Planck Institute for Solid State Research, Stuttgart, Hamburg, Halle, Dresden | Dresden, Sachsen | Germany | 7 days ago
Job Offer from October 06, 2025 Are you interested in working in the rapidly evolving research field of quantum materials? The Max Planck Graduate Center for Quantum Materials (MPGC-QM ) currently
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Max Planck Institute for Chemical Physics of Solids, Dresden | Dresden, Sachsen | Germany | about 4 hours ago
Job Offer from October 13, 2025 The International Max Planck Research School for Chemistry and Physics of Quantum Materials is a joint PhD program between the Max Planck Institute for Chemical
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to establish an international quantum computing programme, funded by the Novo Nordisk Foundation, that will drive research and innovations at multiple levels - from developing scalable quantum processor
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project. We seek to recruit multiple PhD students in 2026 to a range of inter‐institutional research projects in the broadly defined field of quantum materials. Research work will be combined with graduate
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. We are looking for PhD students to join the Hermans Lab and take the next step and build a next-generation quantum network. Can we control multiple of these REIs within the same chip and perform two
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-generation quantum network. Can we control multiple of these REIs within the same chip and perform two-qubit gates between them? Using such coupled emitters, is it possible to run advanced entanglement
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contrast to classical systems, the quantum properties of matter provide extraordinary functionalities that can be harnessed for future applications. Quantum states arise at atomic length scales, where