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Condensed Matter , Theory , topological states Quantum Computing Condensed Matter and Statistical Physics / Dynamical and non-equilibrium phase transitions Quantum Optics / Ultracold Atomic Gases Quantum
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-short pulse laser physics / optical frequency combs Posting ID: 25.132-4210 Nuclear spectroscopy of 229 Thorium is a highly interesting field of research at the intersection between nuclear and atomic
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-short pulse laser physics / optical frequency combs Posting ID: 25.132-4210 Nuclear spectroscopy of 229Thorium is a highly interesting field of research at the intersection between nuclear and atomic
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Fritz Haber Institute of the Max Planck Society, Berlin | Berlin, Berlin | Germany | about 1 month ago
of emergent materials. Investigate femtosecond structural and electronic dynamics in quantum materials and 2D van der Waals systems. This position combines instrument development and pioneering research
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21 Oct 2025 Job Information Organisation/Company Ruhr-Universität Bochum Department Electrical Engineering and Information Sciences Research Field Physics » Optics Engineering » Electronic
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Position Details The position will be based in Boulder, Colorado, in the Quantum Nanophotonics and Faint Photonics groups led by Rich Mirin and Marty Stevens, and the SNSPD group led by Varun Verma
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: - Quantum computing with qudits, quantum error correction and fault-tolerance - Quantum optics of trapped ions and Rydberg atom arrays - Numerical tensor network techniques - Topological order and (de
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 2 months ago
Further training opportunities and free in-house language courses Position details The position will be based in Boulder, Colorado, in the Quantum Nanophotonics and Faint Photonics groups led by Rich Mirin
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Bewerbungsende: 22.09.2025 The AG Weinelt studies ultrafast dynamics in quantum materials initiated by ultrashort optical laser pulses. This includes single and collective quasiparticle dynamics
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Bewerbungsende: 22.09.2025 The AG Weinelt studies ultrafast dynamics in quantum materials initiated by ultrashort optical laser pulses. This includes single and collective quasiparticle dynamics