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Apply now Job no:534905 Work type:Faculty - Pro Tempore Location:Eugene, OR Categories:Biology/Life Sciences, Research/Scientific/Grants Department: Center for Translational Neuroscience Rank
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members working on novel high-resolution microscopy techniques to experimentally quantify transition probabilities, alongside density functional theory (DFT) calculations of defects in feldspar. This inter
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developing and/or using quantum chemical and/or density functional theory methods using a variety of software packages. Demonstrated ability to undertake high-quality research and write high-impact manuscripts
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are modified at the near field and how such a new system can enable optically addressable atomic memory with ultrahigh storage density. The successful candidate will be part of a highly collaborative research
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synthetic and additional characterization needs. High-performance computing facilities will also be made available and the successful candidate will use density functional theory calculations to predict
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processes. Computational methods will primarily involve density functional theory, density functional tight binding, classical molecular mechanics, coarse-graining, and machine-learning potentials to run
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calculations in quantum field theory, in particular conformal field theory. Ability to write code for computer simulations of quantum many-body systems (in particular methods of exact diagonalization and density
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to density functional theory and many body perturbation theory based methods such as GW+BSE. Applicants should have expertise in the computational implementation of both ground and excited state first
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purification. The postdoc will perform theoretical simulations of 3D/2D materials by primarily Density Functional theory (DFT), for identification of ground state crystal structure, composition and properties
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Duties and Responsibilities: You will perform molecular dynamics simulations using MILPs. You will perform density functional theory (DFT) calculations for solid state materials. You will build and train