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: Nanomechanical motion transduction with a scalable localized gap plasmon architecture. Nature Communications 7: 13746, 2016. https://dx.doi.org/10.1038/ncomms13746 Brian J. Roxworthy and Vladimir A. Aksyuk
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nanotechnology. About You Deep understanding of waveguide optics, light-matter interaction, and plasmonics Proficiency with electromagnetic simulation tools (e.g., Lumerical FDTD/MODE, COMSOL Multiphysics, Ansys
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University. The group focuses on fundamental studies of nanoscale electrical, optical, and plasmonic devices that operate based upon quantum mechanical principles, as well as the development of new nano- and
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nanotechnology, material science, nano and quantum technologies. We look for candidates interested in in further developing NIST unique PTIR instrumentation (see description at: https://www.nist.gov/programs
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quality recombinant proteins in various heterologous host systems. • Documented experience in using biophysical tools such as: surface plasmon resonance, nano-DSF, CD, HDX-MS, and/or single-molecule mass