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The Surface Scattering and Microdiffraction (SSM) group in the X-ray Science Division (XSD) at the Advanced Photon Source (APS), Argonne National Laboratory is seeking Two Postdoctoral Appointees, both focused on multimodal synchrotron characterization of defects and interfaces in oxides and 2D...
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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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the experimental development of an approach to the 3D characterization of organic crystals. The approach is based on thermo-microscopy, combined with multidirectional observation, allowing for in situ, 3D
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discrete dislocation plasticity simulations and using insight gained to validate and refine crystal plasticity and continuum scale models where appropriate. You should possess a PhD (or near completion) in
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on “Improving the thermo-optical properties of Ge single crystals for Infrared applications” The demand for infrared (IR) optical technologies is rapidly increasing across various sectors. At present, Germanium
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both powder and single crystal X-ray diffractometers. A key initial focus will be to develop a unique facility for ultrafast single-crystal X-ray diffraction. You should have a PhD in Chemistry, Chemical
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The successful candidate will contribute to a research project at the intersection of engineering (pre-stressed concrete bridges), material science (Cholesteric Liquid Crystal Elastomer), sensing
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visible wavelengths from an infrared source, efficient second-harmonic generation in silicon nitride PICs, the study of photonic crystal ring resonators for applications in nonlinear photonics, and the
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University Abu Dhabi, seeks to recruit a post-doctoral associate to work on crystal structure determination using electron or X-ray crystallography. Candidates must have substantial experience in
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group's efforts in modeling combustion-generated aerosols. These modeling framework will be used to understand the impact of inorganic aerosols on sunlight scattering and droplet/ice crystal nucleation