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work on developing a unique ultrafast spectroscopy technique to quantify in the influence of phonons on the quantum dynamics of quantum emitters in hBN and molecular systems. You will work in close
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focus on DFT ground-state workflows and later extend to excited-state calculations with applications spanning optoelectronics, energy materials, and molecular systems. Key tasks include workflow
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interdisciplinary, collaborative project at the interface between nucleic-acid chemistry, DNA/RNA nanotechnology and cell biology. Your profile Applicants should hold a PhD in chemistry, molecular biology
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