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Growth and characterization of epitaxial and nanostructured films, and interfaces: pulsed laser deposition, in-situ analysis, optical, magnetic and transport properties¡£
The study of physical properties and technological applications of innovative materials, like thin films of ¡®half metal¡¯ oxides or magnetic nanoparticles, high electronic mobility interfaces between insulating oxides and heterostructures with different functionalities (dielectric, ferroelectric, superconductive), require a fine control of the fabrication process as well as the use of advanced characterization techniques. The samples will be grown by means of pulsed laser ablation, in the ns as well as fs time regime. The growth will be monitored in real time through different complementary techniques, capable of probing both the generated plasma and the surface. The ¡®in situ¡¯ characterization of the samples will be performed by means of photoemission spectroscopy, electronic diffraction and surface second harmonic generation (SSHG). The study of the electronic, magnetic, optical and structural properties of the fabricated samples will exploit several advanced characterization techniques: SSHG, transport measurements in external fields, magnetization measurements, THz spectroscopy, and advanced spectroscopies at large scale facilities.

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