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Field
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, integration, calibration, or characterization of optical or ultrasound instrumentation. Salary and Rank Special Instructions Applications received by October 25, 2026 will receive full consideration. However
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architectures. The role will involve advanced optical spectroscopy and characterization techniques, including real-space and Fourier-space imaging, polarization- and time-resolved measurements, room-temperature
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–inorganic materials for applications in quantum sensing, quantum photonics, and related quantum technologies. The successful candidate will design, fabricate, and characterize quantum materials and nanoscale
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1. PhD in Chemical Engineering, Materials Science, Mechanical Engineering, or a related discipline. 2. Knowledge of catalytic membrane reactors, membrane separation, or heterogeneous catalysis
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for back-end-of-line (BEOL) integration with CMOS. Key responsibilities include: • Develop and optimize ALD processes for oxide semiconductor channel materials (e.g., IGZO, ITO, IZO) and BEOL-compatible
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, catalysis and biology. We use molecular beam epitaxy (MBE) to synthesize atomically precise crystals, we integrate them with two-dimensional exfoliated materials, and we characterize them using transport and
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Research Fellow (Nanomechanical Sensors;Quantum Mechanics & Sensors;Waveguide-based Quantum Devices)
Fabrication of Waveguide based quantum sensing 4. Design and Fabrication of NEMS Sensors 5. Testing and characterization of quantum sensors 6.Write 2 or more research papers based on derived data of the above
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toxicity. Integrate longitudinal clinical text, germline genetics, treatment exposures, laboratory measurements, and patient outcomes to characterize who develops immune toxicity and how these events evolve
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, together with LNP engineering and characterization, to elucidate how nanoscale membrane properties regulate LNP–membrane interactions and intracellular delivery. The work will provide mechanistic insights
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>98% Na2SO4 rejection in crossflow filtration mode • Characterize membrane properties and structure using electron microscopy, XPS, FTIR, PALS, etc. • Evaluate membrane performance across diverse