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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
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tracking. Specifically, advance photocurrent detected broad-band ultrafast micro-spectroscopy, towards nonlinear current/fluorescence detected multidimensional micro-spectroscopy. Contribute to publications
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ICFO’s Attoscience and Ultrafast Optics group works in a highly interdisciplinary field which fuses ultrafast laser physics, extreme nonlinear optics, atomic and molecular physics, SXR spectroscopy
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beams Experience in ultrafast nonlinear spectroscopy Ability to communicate clearly both orally and in writing Ability to work as a part of a team Strong presentation and communication skills Good
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ultrafast nonlinear spectroscopy Ability to communicate clearly both orally and in writing Ability to work as a part of a team Strong presentation and communication skills Good attention to detail Desirable
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. Experience in ultrafast nonlinear spectroscopy 4. Ability to communicate clearly both orally and in writing 5. Ability to work as a part of a team 6. Strong presentation and communication skills
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to detect, image, and analyze ferroelectric domains in 2D ferroelectric heterostructures. You will employ advanced cryogenic micro-spectroscopy, and reflection contrast imaging to visualize domain structures
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prior experience in vortex beams and nonlinear spectroscopy. The candidate will collaborate closely with project partners at Imperial College London and the University of Exeter, as well as with industry
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in such materials. You will play a central role in imaging ferroelectric domains in a new class of 2D ferroelectrics using state-of-the-art cryogenic micro-spectroscopy techniques. This work involves
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spectroscopy), and for applications in healthcare, advanced manufacturing and the semiconductor industry. Please see https://lupo-lab.com/ for further details of my group. Our group is part of the Institute