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Field
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, Electronic Structure, Strongly Correlated Materials , Condensed Matter Theory , condensed matter theory; ultracold quantum gases , Energy Materials , Quantum Information , Soft Condensed Matter Physics
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transfer, non-equilibrium phenomena in realistically large solid/solid, solid/liquid, solid/gas interfacial systems. Code implementation of spectroscopic modules in electronic structure theory software
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states and ultrafast phenomena. Track records of applications of electronic structure theory code and software, such as VASP, QE. Experience working closely with experimentalists and understanding
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characterization techniques. • Experience in simulation and molecular modeling. • Prior knowledge of density functional theory (DFT) and experience with DFT codes are highly desirable. Skills and abilities
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University of New Hampshire – Main Campus | New Boston, New Hampshire | United States | about 2 hours ago
high energy physics, astrophysics, and/or cosmology, ideally with an already established facility with standard cosmological codes and comfort with the basics of axions and/or scalar field theory
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applicant should have: A strong mathematical background, particularly in probability theory and stochastic processes. Familiarity with stochastic differential equations. Ideal Qualifications: Previous
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— the conversion of photon energy into matter via the multiphoton Breit-Wheeler process, enabled by the advent of multi-petawatt laser technologies. The primary objective of the project is to exploit the theory and
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of fluid or kinetic plasma simulation codes Axion or dark photon phenomenology Astrophysical observation and data analysis Analytic plasma theory Compact object astrophysics Laboratory astrophysics
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music theory, rhythm cognition, and music information retrieval, the project will develop a novel, theoretical-analytical framework for the categorization of multi-part rhythmic patterns and their
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computational condensed matter physics. We seek a motivated researcher with expertise in density functional theory (DFT) to study emergent phenomena in quantum materials. Research Areas - Correlated electronic