Part II includes semiconductor fundamental, simulation of Si, Ge, and Sn band structures, quantum wells (QWs), energy sub-bands and wave functions, the k-p method. It also covers QW band structure and other quantum mechanics and solid-state physics aspects relevant for modern nanodevices.
The successful candidate should have extensive relevant industry experience and/or at least a PhD degree in Electrical & Electronic Engineering and a passion for teaching.
Further information about the School can be viewed at the following website:
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