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of semiconductor properties through electronic doping to control and modify its electronic characteristics. The project’s goal is to develop fundamental understanding and innovative fabrication processes to solve
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would be beneficial. A proactive, independent, and structured working style, combined with the ability to work effectively in interdisciplinary teams. Curiosity and strong motivation to acquire new skills
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single electron spins in diamond as sensors to explore magnetic phenomena at the nanoscale. This doctoral project will center around the development and application of scanning magnetometry at ultra-low
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Interact with national and international teams of mathematicians and computer scientists PhD applicants must possess a Master's degree in mathematics, theoretical physics, or computer science. Candidates
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Your position Stacking and twisting atomically thin materials offers unprecedented control over their nanoscale magnetic, electronic, and optical properties. In this project, we will develop a novel
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energy commitment, and the ability to tolerate frustration. You will work in a highly integrated way as part of a team, while you will also need to push your project forward. We offer you We
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probe microscopy. Our research focuses on using single electron spins in diamond as sensors to explore magnetic phenomena at the nanoscale. This doctoral project will center around the development and
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foundation. Candidates are also expected to have strong coding and implementation skills, with the ability to run large-scale experiments. While research experience is advantageous for PhD applicants, it is
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application including: CV full transcripts from undergraduate studies (both Bachelor and Master) a brief (1-page) motivation letter at least 2 names of referees (with email addresses and phone numbers) Review
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via email or postal services will not be considered. Further information about LESE can be found on our website . Questions regarding these positions should be directed to Prof. Christoph Müller