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other characterization methods, as well as across multiple CNMS groups and divisions at ORNL. Major Duties/Responsibilities: Conduct materials research using combined photonics/scanning probe microscopy
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production, and photon and fusion-energy science. Under the direction of Professor Bruce Schumm, and working in collaboration with SCIPP Fast Sensors group members and its national and international partners
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(multiomics), CRISPR genome editing, deep learning, network modeling, confocal and two-photon live imaging. Please visit the Özel Lab Website for more information. Ideal candidates will be highly motivated and
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by January 2025. Preferred Qualifications: Strong background in semiconductor photonic device nanofabrication and characterization. Experience with experimental investigation and realization
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. The applicant will join a well-funded lab to engage in basic and translational neuroscience research. The laboratory uses in-vivo and in-vitro recording techniques including 2-photon imaging, whole-cell recording
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by January 2025. Preferred Qualifications: Strong background in semiconductor photonic device nanofabrication and characterization. Experience with experimental investigation and realization
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. The applicant will join a well-funded lab to engage in basic and translational neuroscience research. The laboratory uses in-vivo and in-vitro recording techniques including 2-photon imaging, whole-cell recording
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extensive experience in design, development, implementation and testing of opt-mechanical-electrical-photonics systems. Preferred Qualifications Experience with adaptive correction of aberrations by air
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, biology, or other biomedical discipline. Previous research using 2-photon imaging, slice electrophysiology, optogenetics, rodent behavioral analysis, calcium imaging, or coding is preferred, but we are also
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, United States of America [map ] Subject Areas: Physics / Atomic, Molecular, and Optical Physics , Experimental Ultrafast Physics , Metrology , Optics and Photonics , Quantum Optics , Quantum Sensors , Ultrafast Science