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Field
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-transfer printing. You will be responsible for: Developing novel fabrication methods for solid laser waveguides (e-beam lithography / dry-etch optimization / thin-film development) Testing and characterizing
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/ dry-etch optimization / thin-film development) Testing and characterizing on-chip solid-state lasers Modelling and design of PIC narrow linewidth CW lasers for trapped ion/cold atom/color center quantum
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have: Hands-on experience in micro/nanofabrication, preferably including lithography, thin-film deposition, dry/wet etching, lift-off, release processes, or MEMS/NEMS process integration. Demonstrated
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crystal / thin film scattering measurements, exploiting developments in artificial intelligence and machine learning. We also invite candidates with interests in beamline automation and autonomy
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promise advanced functionality for applications such as quantum information processing and precision sensing. Thin film lithium niobate (TFLN) is a maturing photonics platform that can integrate frequency
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force microscopy, magnetic and dielectric characterization, oxide thin-film growth, and close collaboration with leading theoretical groups. We pursue fundamental experimental research while maintaining a
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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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selectivity, spin-polarized electron transport. • Skilled in the use of SEM, TEM and spectroscopy for nanomaterial, and thin film characterization. • Proficiency in Python, MATLAB, OriginPro, R or a similar
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operating thin film deposition equipment. • Specific experience with MOCVD growth of compound semiconductors, oxides and/or chalcogenide thin films is a plus. • This position requires excellent