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Project Abstract: This PhD project addresses strategic UK priorities in advanced power semiconductor technologies supporting net zero, electrification, and grid resilience. The research will focus
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Description III-N materials: GaN, AlN, InN and their alloys have been presented as interesting semiconductors for the development of optoelectronic devices thanks to their characteristics: their wide direct
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-performance single-photon sources based on semiconductor quantum dots (QDs) in cavities [1]. In particular, we have developed efficient interfaces between a single material qubit (the spin of a single charge in
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background in semiconductor physics or engineering. If you are interested in this exciting opportunity, we invite you to apply online at: https://www.sheffield.ac.uk/eee/pgr/apply. Funding Notes Full funding
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using the dedicated electronic form. helpdesk: petra.koudelova@fsv.cvut.cz Wide-Bandgap Electronics for Energy Conversion Description: Semiconductor devices are at the heart of electrical energy
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semiconductor crystals. Due to the relatively low photon flux associated with harmonic emission in crystals, traditional characterization methods prove unsuitable or challenging to apply. The PhD project goal is
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? No Offer Description - work environment: The Institut d’Electronique et des Systèmes (IES) is a joint research unit from U. Montpellier and CNRS. The nanoMIR research group (https
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Job Summary/Basic Function: To continue developing education and outreach programs that create pathways into the semiconductor industry. This is a temporary, benefit-eligible opportunity with
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EDA & semiconductor test tools. MSc/PhD, C++, & EDA/DFT experts: join our startup & have an immediate impact! Job description The POPCORN project aims to revolutionize semiconductor testing by
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nm optical microscopy." Optics Express 21(22): 26219-26226, 2013. http://dx.doi.org/10.1364/Oe.21.026219 Optics; Semiconductors; Ultraviolet; Electromagnetic simulations; Lasers; Nanoscale