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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
optimize the growth of GaAs nanowires integrating crystal-phase heterostructures by molecular beam epitaxy (MBE). Contribute to scientific writing, presentation of results, and promotion of the project's
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guest exchange (J. Am. Chem. Soc. 2025, 147, 17201 https://doi.org/10.1021/jacs.5c02868 ). It is the aim of this project to use this novel methodology to investigate a range of single crystal-to-single
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—CIMAP and IRCER for the growth of new laser crystals and ceramics, and CORIA for laser optics—through the ANR DUPLEX project (Dysprosium for Ultrashort-Pulse Lasers using Low-Phonon Crystals for Emission
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experimental advances have shown that “self-poisoning”, where the growth of polymer crystals is slowed down, not by impurities but by polymer molecules themselves having the wrong conformations or crystallising
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visualization of the crystal shape from a seed in the molten liquid. He/she will ensure the experimental characterization of the equilibrium and growth shapes of several organic crystals. 1. Experimental
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8 Jan 2026 Job Information Organisation/Company alqem GmbH Research Field Physics » Crystal growth Chemistry » Inorganic chemistry Engineering » Materials engineering Researcher Profile Established
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16 Jan 2026 Job Information Organisation/Company Institute for Material Physics Research Field Physics » Crystal growth Physics » Solid state physics Physics » Surface physics Physics » Condensed
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Academic Job Category Faculty Non Bargaining Job Title Research Associate – Crystal Growth Department Research | Quantum Matter Institute | Faculty of Science (Andrea Damascelli) Posting End Date
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relation to composition, cooling, crystallization, and bubble growth. The selected researcher should have GIS expertise to map lava field morphologies, conduct multi-scale petrographic and petrological
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research. The applicant should possess strong experimental skills in growth and characterization of organic semiconductors (especially highly ordered small-molecule single crystals). He/she is expected