Abstract:A novel boundary element implementation that models multiple scattering of plasmonic nanowires is presented. The modeling is based on potentials and the materials constituting the wires can be local (described by the local response model) or nonlocal (described by the nonlocal hydrodynamic model). The nonlocal hydrodynamic model (HDM) provides an important approximation describing nonclassical effects associated with the collective motion of free electrons in metals. The modeling is challenging as different in… Show more
Atomistic discrete interaction models can bridge the size gap between quantum and classical continuum models in addressing nanoparticle plasmonics and give insights into the discrete nature of ultrafine nanoparticles.
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