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applied chemistry. Strong background in synthesis and steady-state and time-resolved spectroscopy characterization, with a proven track record of publications in high-impact journal. Special consideration
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in NMR Spectroscopy of Transition-Metal Complexes: Principles and Chemical Concepts. Acc. Chem. Res. 2024, 57 , 1467-1477. https://doi.org/10.1021/acs.accounts.3c00786 . B.J.R. Cuyacot et al
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students also are expected to take up teaching assistant tasks. The experimental work involves the study of clusters in molecular beams using mass spectrometry, infrared and visible light spectroscopy using
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) J. Novotny et al. Paramagnetic Effects in NMR Spectroscopy of Transition-Metal Complexes: Principles and Chemical Concepts. Acc. Chem. Res. 2024, 57, 1467-1477. https://doi.org/10.1021/acs.accounts
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optics, with a focus on quantum channel discrimination for high-resolution spectroscopy and AC field sensing. The project aims to develop theoretical frameworks for distinguishing closely related quantum
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of Prof. Tomasz Smoleński at the Department of Physics, University of Basel, Switzerland (https://smolenski-lab.com ), is looking for a highly-motivated and self-driven PhD candidate. The group utilizes
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of defect physics and provide fresh insights into the hotly debated topic of 2D material defect passivation, leveraging advanced vibration spectroscopies, time-resolved optical spectroscopy and microscopy
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(or as agreed) The newly-established “Quantum Opto-Electronics" research group of Prof. Tomasz Smoleński at the Department of Physics, University of Basel, Switzerland (https://smolenski-lab.com ), is
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Megagauss magnetic fields by means of quasi-optical conductivity measurements in the GHz range and THz spectroscopy. The successful candidate will contribute to the development of novel GHz and THz
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spectroscopy to tackle challenges in photophysics and photochemistry as well as in material sciences. (https://www.ch.nat.tum.de/dynspec/startseite/). We work with (time-resolved) fluorescence, excitation and