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availability. Relevant Publications: 1. P. Chen et al., Ultrafast photonic micro-systems to manipulate hard X-rays at 300 picoseconds, Nat Commun, 10:1158 (2019). https://doi.org/10.1038/s41467-019-09077-1. 2
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platform for X-ray absorption spectroscopy by integrating LLMs, scientific machine learning, physics-aware workflows, and strong computational chemistry/electronic-structure expertise. The researcher
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, including phonons, magnons, and other emergent quasiparticles. The successful candidate will lead time-resolved X-ray diffraction experiments to reveal structural and electronic dynamics in condensed matter
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, computational materials science, chemical engineering, or equivalent experience applying these scientific principles in computational research A strong foundation in quantum mechanics and electronic
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solver, capable of running simulations on the Aurora supercomputer, using AMReX ( https://amrex-codes.github.io/amrex/ ) and the lattice Boltzmann method (LBM). The candidate will develop flow/geometry
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soon-to-be-completed PhD (within the last 0-5 years) in chemistry, physics, chemical engineering, or a closely related field A strong foundation in quantum mechanics and electronic structure theory
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building new electronic experiments. Experience : Ph.D degree in the field of Condensed Matter Physics, experimental High Energy Physics, Quantum Information Science, or a closely related discipline
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, and nanofabrication. Areas of interest include, but are not limited to, the development of energy-efficient electronic systems through heterointegration for applications in RF electronics, power
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electronic polymers, conjugated polymers, organic semiconductors, soft materials, electrochemical materials, or related functional materials Experience integrating literature, experimental, and simulation