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members of his research group with the Durham Quantum Light and Matter research section. The goal of the research is to synthesise and study artificial quantum materials using ultracold molecules arranged
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artificial quantum materials using ultracold molecules arranged in regular arrays to probe novel quantum phenomena in strongly interacting quantum systems. The use of molecules is motivated by their rich
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of the ACiD group within the Department of Computer Science at Durham University. Key responsibilities: To understand and convey material of a specialist or highly technical nature to the team or group
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behaviour of so-called yield stress fluids, which keep their shape like solids at low loads, yet flow like a liquid at larger loads. One possible focus could be on the dynamical process whereby a material in
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behaviour of so-called yield stress fluids, which keep their shape like solids at low loads, yet flow like a liquid at larger loads. One possible focus could be on the dynamical process whereby a material in
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benefits of CPL detection would allow the broad communities of life and material sciences to adopt this facile technology. We forecast a potentially game-changing impact on a global scale that reaches
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. Jeremy Hutson (Chemistry), and their research teams in the Quantum Light and Matter group. The overarching goal of the research is to synthesise and study artificial quantum materials using ultracold CsYb
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Plant Molecular Biology or a related subject. Experience Experience in conducting high quality academic research. Demonstrable ability to write material of a quality commensurate with publication in
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Mechanical/Thermal Engineering or related subject. Experience Experience in conducting high quality academic research. Demonstrable ability to write material of a quality commensurate with publication in
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, Mechanical, Thermal Engineering or Computer Science. Experience Experience in conducting high quality academic research. Demonstrable ability to write material of a quality commensurate with publication in