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Field
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solid state physics - superconductivity/ quantum devices - clean room micro-nano fabrication - optical setups in a weak photon flux regime - low temperature and/or high frequency transport measurements
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Familiarity with performance modeling, analysis and optimization for heterogeneous architectures. Experience with developing code for: molecular dynamics, computational fluid dynamics, or quantum chemistry
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Qualifications at this Level Education/Training: PhD (theoretical nuclear/high-energy physics, quantum information science, lattice gauge theories, quantum many-body dynamics) Experience: Preferred--computational
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. You will perform cutting-edge research on theory and modeling of dynamics in condensed matters. Major Duties/Responsibilities: Development of theoretical framework for driven and open quantum systems
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-Based Science and Technology and Advanced Research) project. This position is funded by the NSF EPSCoR RII E-RISE program and focuses on the end-to-end development of high-purity germanium (HPGe
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diodes and Kerr frequency combs, have shown great promise to realize scalable quantum systems. However, the performance of these laser systems is still far from what is possible using tabletop free-space
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quantum systems. However, the performance of these laser systems is still far from what is possible using tabletop free-space or fiber laser systems. During the ERC StG LASIQ we will research novel photonic
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-body systems and development of new neutron sample environment that allows time-resolved neutron scattering capabilities. This position resides in the Quantum Heterostructures Group in the Foundational
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-generation permanent magnets using a powerful combination of high-throughput computation, machine learning, rapid synthesis and efficient characterization. This position requires expertise in synthesizing and
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for high-performance infrared photodetectors and imaging systems. We invite applications for two postdoctoral positions focused on next-generation SWIR and room-temperature MWIR photodetectors based on III–V