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, focused ion beam specimen preparation, and computer vision or machine-learning analysis of microscopy datasets. The position requires strong experimental, analytical, written, oral, and interpersonal
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, including thin-film deposition (e.g., magnetron sputtering), electron-beam or optical lithography, and dry/wet etching Familiarity with microwave resonator design, characterization, and RF/microwave
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physics), device synthesis, and quantum materials (including optics, photonics, spectroscopy, and optically active point defects). Also, familiarity with nanofabrication (optical and e-beam lithography
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. Experience with TEM, including Lorentz TEM and in-situ cryo experiments. Experience with nanofabrication (e.g., focused ion beam, electron-beam lithography and photolithography), transport measurements and
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ferroelectric and other functional materials into photonic architectures for electro-optic and quantum transduction applications Perform full device processing using cleanroom techniques, including electron-beam
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following areas: Transition-edge sensors (TESs) or kinetic inductance detectors (KIDs) Cleanroom microfabrication processes, including: Thin-film deposition (e.g., magnetron sputtering) Electron-beam
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(KIDs) Experience with cleanroom microfabrication processes, including thin-film deposition (e.g., magnetron sputtering), electron-beam or optical lithography, and dry/wet etching Familiarity with
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may include work at Jefferson Lab, the Electron-Ion Collider (EIC) program, detector research and development, and applications of AI in nuclear physics. Applications received by Tuesday, November 4