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Field
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to develop and apply quantum sensors to problems in biophysics. Quantum sensors exploit the coherence and state-dependent response of individual quantum systems to detect magnetic, electric, and
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dynamics of elementary excitations in matter with nanometer spatial and femtosecond temporal resolution. We have pioneered many nano-optical imaging techniques from ultrafast nano-imaging with coherent and
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experimental fluid mechanics, particularly in optical flow-visualization techniques. The successful candidate will conduct advanced laboratory experiments to study the dynamics of gas coherent structures and the
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, spectral properties and beam quality. Analyse experimental data, publish results in scientific journals, present at conferences and contribute to research proposals. Explore new applications of coherent XUV
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, including hardware, electronics Perform experiments involving coherent manipulation of multi-qubit platforms and their optical interconnection for quantum networking Analyze experimental results using
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Overview Molecular spins combine the coherence, optical readout, and room-temperature operation of solid-state spin qubits with the atomistic tunability and nanoscale modularity of synthetic
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 months ago
measurements of mucus transport, which may include particle transport assays and optical coherence tomography. Related work may include single-cell RNA/ATAC sequencing, RNA in situ hybridization, and CRISPR/Cas9
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Optical Coherence Tomography design and instrumentation. The goal of the project is to design and develop novel swept source and spectral domain OCT systems enhanced by ultrasound for structural and
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, including beam propagation, divergence, coherence, footprint, transmission, and resolution Develop innovative optical solutions enabling variable beam size, focus position, and illumination conditions for
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ATLANTIS team led by Dr Francisco J. Rodríguez-Fortuño. ATLANTIS investigates new physics and applications of optical and acoustic near-fields by challenging conventional assumptions about wave structure