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chemical disorder and lattice strain within the MEA structure, we aim to suppress interdiffusion, promote defect recombination, and mitigate radiation defect formation. The study will combine ion irradiation
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states to form lattices of CsYb molecules Quantum many-body physics with ultracold polar molecules Controlling collisions between laser-cooled molecules and atoms The grants are in collaboration with
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the spatial and temporal distribution of lattice strain under realistic operating conditions. This can be achieved usingX-ray Diffraction Microscopy in the unique set-up at ID01.. This project will provide
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A crystal in space represents a distinct state of matter, with spatial periodicity in its lattice structure underpinning its band structure and optical properties. This project concerns time
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well as experience in the development of novel probabilistic methodology. Previous research experience in random interfaces and lattice models would be an advantage. What we offer As well as the exciting opportunities
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A crystal in space represents a distinct state of matter, with spatial periodicity in its lattice structure underpinning its band structure and optical properties. This project concerns time
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to create a digital twin for the NSLS-II accelerator complex Work with NSLS-II upgrade workgroup on the design and optimization of the NSLS-IIU lattice candidates Give presentations and report ongoing work
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lattice models. We welcome applications of candidates from a wide range of backgrounds from theoretical physics to pure mathematics. Candidates with experience in tensor network algorithms, rigorous
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THz. This relatively unexplored frequency window overlaps with numerous elementary processes in condensed matter, such as lattice vibrations (phonons), spin waves (magnons), and the scattering
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involved in the formation and properties of ultracold molecules. The theoretical work is associated with EPSRC-funded research grants on: Leveraging Yb clock states to form lattices of CsYb molecules Quantum