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computer codes of mesoscale structure evolution. o Study the physics of structural, ferroelectric, electronic, and piezoelectric responses of mesoscale domain structures. o Assist writing proposals
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We seek to recruit a talented Postdoctoral Research Associate (PDRA) to develop functional semiconductors by polymer assisted deposition (e.g. new van der Waals materials, ferroelectric
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carried out by the group focuses on the discovery and control of new memory effects in nanoscale materials, including ferromagnetic, spintronic, and ferroelectric systems, as well as on the implementation
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ferroelectrics, plasmonics, semiconductors—into photonic and THz architectures. This is an outstanding opportunity for candidates with a strong background in nanofabrication to contribute to cutting-edge quantum
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the functions associated with research on 2D ferroelectric materials and heterostructures for photoelectrochemical applications, including photoelectrochemical water splitting, using advanced electrical
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computational approaches for growing physical materials with a focus on developing atomic layer processing ferroelectric thin films and their integration with devices. Emphasis will be placed on understanding
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deposition Complete twisted heterostructure and device fabrication using free-standing oxide membranes for physical property characterizations Data analysis of structural, ferroelectric, electric transport
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Postdoctoral Research Associate- AI/ML Accelerated Theory Modeling & Simulation for Microelectronics
length/time scales, to provide improved mechanistic insights into nanomaterials response. Bulk of the work will be on novel materials for next-generation microelectronic devices (e.g. oxide ferroelectrics
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device modeling such as memristors and ferroelectric FETs such as with Verilog-A. Minimum Qualifications: Requires a minimum of a Ph.D. or equivalent terminal degree in electrical engineering, computer
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time-resolved hard X-ray diffraction microscopy and spectroscopy on single-crystalline bulk and thin film quantum materials (e.g. ferroelectrics, multiferroics, strongly correlated electron systems