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a research fellow to conduct high-impact research on orbital current driven domain wall motion. The role will focus on thin-film deposition and onchip device fabrication, combined with electrical
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for a research fellow to carry out high-impact research. The role will focus on thin film deposition and on chip device fabrication for electrical transport measurements to study the interaction between
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Your Job: This Master’s thesis focuses on the growth of stoichiometric chromium telluride (CrTex) thin films using molecular beam epitaxy (MBE), with an emphasis on achieving controlled
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deposition of stacks of thin films based on oxides, nitrides, and silver. The total stack thickness is less than 300 nm and it is composed by 10-30 different layers. Control of the mechanical properties is key
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to understand materials behaviour. Key Responsibilities: Conduct advanced characterization on thin films and nanostructure samples, especially FIB and TEM. Develop workflow for device fabrication. Develop
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in nanomaterials and thin films for electronic or energy applications; (d) secure external competitive research grants, conduct academic research and publish in top-tier journals; (e) take charge
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Your Job: Synthesize, characterize, and control lattice distortions in atomically defined oxide thin films, based on state-of-the-art thin film technologies and characterization methodology
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-reciprocity of spin waves Angular Momentum of Magnons Magnetically doped Transition Metal Dichalcogenide Thin Films via Molecular Beam Epitaxy Modeling of a magnonic diode based on spin-wave non-reciprocity in
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optics, Thin films JOB /OFFER DESCRIPTION Two-dimensional thin films are well-known for their high optical nonlinearities. For this reason, they are currently the best candidates for mode-locking of laser
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and dense hyperspectral components. In this Ph.D. thesis we propose to develop variable thin-film optical filters using plasma assisted reactive magnetron sputtering (PARMS) technology. These filters