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emitters and detectors are still missing in this range, known as the THz gap. Existing devices are mostly based on semiconductors and have limited performances. The use of new physical mechanisms, not
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mechanisms. This post is funded by a collaboration programme with a group of Prof. Will Branford and Dr Jack Gartside where another postdoctoral researcher has been placed for our joint work. While novel
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will focus on the control of magnetic properties under mechanical stresses (by in situ magnetometry and imaging) to anticipate the performance of flexible or stretchable magnetic sensors. The PhD student
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complex quantum physical concepts to develop meaningful ab initio models. A good understanding of the mechanisms involved in prospective spintronic devices will be preferable to identify the best materials