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at LTE (Laboratoire Temps Espace, Observatoire de Paris) is developing Optical Lattice Clocks (OLCs) that are now more accurate and more stable than primary frequency standards. These clocks are among
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dimensions offer a paradigm-shifting approach to photonic systems, enabling the study of high-dimensional lattices physics using low-dimensional photonic systems. Our research combining quantum physics and
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/or lattice QCD in collaboration with Takashi Kaneko and/or Motoi Endo at KEK Theory Center. It is encouraged to visit foreign laboratories for three months or more during the employment period and
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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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] Subject Areas: Quantum Computing Lattice QCD and Heavy Ion Physics Machine Learning Nuclear Physics Quantum Field Theory (more...) High Energy Astrophysics Lattice Field Theory lattice gauge theory High
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] Subject Areas: Quantum Computing Lattice QCD and Heavy Ion Physics Nuclear Physics High Energy Astrophysics Quantum Field Theory (more...) lattice gauge theory High-Performance Computing Lattice Field
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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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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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international experimental groups. About the research project This project investigates how polarons, formed by interactions between charges and the lattice, influence the efficiency of materials used in solar