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, particularly relevant for the investigation of the dielectric function in anisotropic or angle-dependant systems (e.g. moiré physics). In addition, the researcher will take advantage of other assets of LEM
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and their dynamics in real time. This work will shed light on the interplay between ferroelectric order, interlayer excitons, and dielectric environment, revealing how local optical responses correlate
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understanding the influence of the dielectric environment on interlayer excitons and unraveling the mechanisms governing domain dynamics, such as flipping and domain wall propagation—central to the emerging
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of the proposed research program is to implement a dielectric waveguiding circuitry able to excite efficiently the plasmonic cavity both in fs-pulsed IR and cw visible regimes, so as to trigger non-linear and