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into polymer matrices. - Use of luminescent species for applications such as sensors. - Knowledge of DFT‑type simulation methods for modeling molecular properties. - Experience writing scientific articles and
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molecular dynamics simulations across multiple resolutions, most likely from the atomistic to the coarse grained level, using a variety of force fields and computational methods. Run large-scale simulations
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. Our group combines state-of-the-art methods in experimental ultrafast spectroscopy and molecular dynamics simulations: We develop and apply novel ultrafast spectroscopic methods aimed at uncovering how
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structures for single photon emitters, a key component of the future quantum technologies that will revolutionize society. He/she will develop nanostructures by molecular beam epitaxy (MBE) and will perform
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or equivalent Skills/Qualifications We are looking for enthusiastic candidates with: Ph.D. in physics, chemistry, applied mathematics, or related fields, strong background in molecular simulations and HPC, good
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for terrestrial applications. The postdoctoral researcher will: • Grow nanostructures and solar cells using molecular beam epitaxy (MBE). • Process the grown materials into complete solar cell devices. • Carry out
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solar cells on silicon. â•¢ Grow nanostructures, tunnel junctions, and solar cells using molecular beam epitaxy (MBE). â•¢ Process the grown materials into complete devices, which will subsequently be
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tightly collaborate with a team of computer scientists, data scientists, biomechanicians and experts in cell and molecular biology. Where to apply Website https://apply.interfolio.com/174763 Requirements