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; previous experience as local contact at synchrotron XAS beamlines; knowledge of advance characterization techniques like XANES simulation and ab initio calculations (e.g. DFT). Good time management skills
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simulations of materials that can exhibit neuromorphic behavior. The work involves the use and development of advanced computational methods, such as atomistic spin dynamics (ASD) and electronic structure
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simulations. The project is funded by the Research Council of Norway and is a collaboration between NTNU and Norsk Regnesentral (The Norwegian Computing Centre). The PhD candidate will be a part of the research
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, please contact Duy Le at [email protected]. Responsibilities: The Postdoctoral Associate’s Responsibilities include but are not limited to: Performing computational modeling using DFT, GC-DFT, MD (AIMD
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(TMDs). The main activity involves the development and application of a multiscale framework to simulate the excitonic dynamics and optoelectronic properties of these materials. Specifically
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packaging solutions for semiconductor devices. Develop and support TIE's 3D-ADK (Assembly Design Kit). Interpret fab metrology, defect, E-test yield, and evaluate silicon-to-simulation correlation accuracies
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, theoretical modeling, and numerical simulation to understand and control materials at the nanoscale. Project background Nanometer-scale semiconductor crystallites exhibit optical properties (e.g., absorption
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semiconductors, including conjugated polymers. • Perform molecular dynamics simulations to investigate structural organization and molecular connectivity. • Carry out electronic-structure calculations
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be possible; and modeling results will be used to interpret experimental data and to guide subsequent experimental work. key words DFT; 2D materials; Electronic devices; Simulation; Transport
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execution and tracking. Experience with formal verification is a plus. Understanding of the remaining steps of the digital ASIC-design flow is required: logic synthesis, timing analysis, power simulation