arXiv · 1101.1769
Resonances On-Demand for Plasmonic Nano-Particles
Abstract
A method for designing plasmonic particles with desired resonance spectra is presented. The method is based on repetitive perturbations of an initial particle shape while calculating the eigenvalues of the various quasistatic resonances. The method is rigorously proved, assuring a solution exists for any required spectral resonance location. Resonances spanning the visible and the near-infrared regimes, as designed by our method, are verified using finite-difference time-domain simulations. A novel family of particles with collocated dipole-quadrupole resonances is designed, demonstrating the unique power of the method. Such on-demand engineering enables strict realization of nano-antennas and metamaterials for various applications requiring specific spectral functions.
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Pavel Ginzburg, Itay Shor, Nikolai Berkovitch, Amir Nevet, Meir Orenstein. 2011-01-10. Resonances On-Demand for Plasmonic Nano-Particles. https://doi.org/10.1021/nl200612f
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