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that focuses on the manipulation of collective spin excitations in magnetic materials. The use of magnons for classical or quantum information transport is being considered as a long-term prospect. In
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of individual charges in real time. Researchers will use advanced germanium-based materials with exceptional quantum properties to pioneer new methods for manipulating quantum states. The anticipated outcomes
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and distributed sensing applications over optical fibers. The work will involve advanced manipulation of the phase of ultra-stable lasers, the development and implementation of advanced modulation and
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remains largely unexplored and represents a fascinating frontier for molecular computing. The development of new methods will be necessary to enable the manipulation of data within complex molecular
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of bacterial mutant strains and plasmids. * Construction, manipulation and/or screening of strain libraries, particularly using CRISPRi approaches. * Development and implementation of phenotypic assays to assess