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with DFT or electronic-structure codes such as VASP, Quantum ESPRESSO, CP2K, ABINIT, GPAW, Gaussian, ORCA, Q-Chem, or related packages. Strong materials science or chemistry domain knowledge, such as
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of using existing and emerging grid assets to ensure grid reliability and affordability of energy supplies. The group focuses on advanced grid modeling using advanced computing resources (e.g., quantum
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. The ideal candidate should have very good knowledge and experience in the areas of topological superconductivity, quantum materials, and superconducting devices. Technical experience in the areas of epitaxial
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optical links are more secure that radio links where signal diverges over a large area, and can be further secured by Quantum Encryption techniques. On the other hand, optical links are affected by clouds
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/reactions, with increasing emphasis on using artificial intelligence and quantum information science. The group has access to extensive laboratory and national computational resources and has significant
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advanced physics-informed AI models for scientific discovery Hands-on expertise developing and applying machine learning for materials and/or process discovery, particularly quantum materials Some form of
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, astronomy, atomic physics, quantum optics, condensed matter physics, high energy physics, nuclear physics, and related areas. We offer our students a variety of graduate and undergraduate degree options
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will work on a DOE-funded SciDAC project Moving Electrons through Space and Time: Enabling the Quantum Dynamics of Chirality-Induced Spin Selection Through Novel and Scalable Computational Methods
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 months ago
for an additional year. Minimum Education and Experience Requirements A Ph.D. in Mathematics or Theoretical Physics (with research relevant to string theory or quantum field theory) Required Qualifications
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platforms. Interdisciplinary Environment: Work alongside experts in nanofabrication, material growth, two dimensional materials, spin-orbit torques, and quantum devices in a vibrant and supportive research