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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
outcomes. Molecular beam epitaxy (MBE) growth of GaAs nanowires on patterned Si/SiO₂ substrates. Structural analysis by electron microscopy (in situ TEM, electron diffraction, zone-axis indexing). Automated
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to staff position within a Research Infrastructure? No Offer Description The Institute of Applied Optics (ITO) at the University of Stuttgart has a strong background in optical metrology, diffractive
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dynamics, it is therefore necessary to correct aberrations over time to restore a diffraction-limited illumination beam. This will be achieved using an adaptive optics (AO) loop specially designed for in
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neutron scattering, diffraction, and imaging, in close collaboration with beamline teams at SLS and SINQ. The postdoctoral fellow will work closely with the Coherent X-ray Scattering Group (CXS
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. Conventional experimental techniques such as dilatometry, optical and electron microscopy, electron backscatter diffraction and x-ray diffraction with Rietveld refinement are available at the lab and can be used
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electromagnetic modes. These systems are investigated using advanced optical spectroscopy and near-field techniques to access nanoscale optical phenomena beyond the diffraction limit. The research integrates design
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(specular reflection). However, faulted zones with high contrasts imply multiple diffraction phenomena. The first objective is therefore to see whether the matrix approach can be successfully applied
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University of California, Los Angeles | Los Angeles, California | United States | about 14 hours ago
fibrils associated with the onset of neurodegenerative conditions including Alzheimer’s, Parkinson’s and ALS. Methods include x-ray diffraction, electron microscopy, and cellular and animal assays Job
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motivated to acquire new skills. Candidates must be fluent in English and/or French with scientific writing skills. The doctoral contract will take place at the CRISMAT laboratory (https://crismat.cnrs.fr
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(JCNS-1) Project 3: Combined X-ray and neutron single-crystal high-pressure diffraction in diamond anvil cells (JCNS-2) Project 4: Experimental and numerical investigation of the heat flow generated by