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-matter Bose-Einstein condensates (BEC) using optical signals in the telecom and infrared (IR) spectral ranges. Project background: The control methods are enabled by strong exciton-photon and exciton
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superconductors . Project Description Multiferroic materials exhibiting coexisting electric and magnetic orders and a strong magnetoelectric coupling, are at the frontier of condensed matter physics due
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-matter Bose-Einstein condensates (BEC) using optical signals in the telecom and infrared (IR) spectral ranges. Project background: The control methods are enabled by strong exciton-photon and exciton
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or desired background A first class or an upper second class British Bachelors Honours degree (or equivalent) in an appropriate discipline. Subject area: Condensed matter physics, materials science
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materials science, mechanical, chemical, nuclear or aerospace engineering, or physics (including plasma or condensed matter). Prior experience in microstructural characterisation or fusion/fission concepts is