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Field
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, plasma generation, and emission spectroscopy. Research will focus on femtosecond laser spatiotemporal pulse shaping with bursts of femtosecond pulses, imaging with single-shot ultrafast schemes, and high
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education in the sciences wherever optics, spectroscopy, quantum science, and the physical investigation of atomic and molecular processes are involved — in either fundamental aspects or technological
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spectroscopy and Brillouin light scattering (BLS) spectroscopy, complemented by micromagnetic modeling of the experimental results. The fellowship will involve work related to the setup and operation of a wave
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-equilibrium phenomena. The computational results are expected to compare with X-ray spectroscopy, and/or pump-probe spectroscopic observations. You will: Perform computational investigation of ultrafast charge
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must hold a PhD in chemistry, physics or a relevant subject area, (or be close to completion) prior to taking up the appointment. The research requires experience in sensitive spectroscopy in
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length scale gap for non-equilibrium phenomena. The computational results are expected to compare with X-ray spectroscopy, and/or pump-probe spectroscopic observations. You will: Perform computational
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or more of the following techniques: Electroencephalography (EEG) Functional Near-Infrared Spectroscopy (fNIRS) Biosensors (ECG, GSR…) Start Date and Conditions Start date: April-May 2026 in Barcelona
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The Center for Intelligent Optics (CIO) develops advanced optical technologies, including imaging, spectroscopy, and laser ablation methods. Our goal is to bridge these cutting-edge laser
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-phase investigations using cryogenic MS–IR spectroscopy [5-6] and several MS-based approaches [7-8]. By bridging chemical biology and physical chemistry, this work will redefine flavins as programmable
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optoelectronic characterization of ferroelectric domains and excitonic properties, including micro-photoluminescence, Raman spectroscopy, SHG, and near-field optical methods. Investigation of ferroelectric domain