arXiv · 2009.08502
Trade-offs in absorption and scattering by nanophotonic structures
Abstract
Trade-offs between feasible absorption and scattering cross sections of obstacles confined to an arbitrarily shaped volume are formulated as a multi-objective optimization problem solvable by Lagrangian-dual methods. Solutions to this optimization problem yield a Pareto-optimal set, the shape of which reveals the feasibility of achieving simultaneously extremal absorption and scattering. Two forms of the trade-off problems are considered involving both loss and reactive material parameters. Numerical comparisons between the derived multi-objective bounds and several classes of realized structures are made. Additionally, low-frequency (electrically small, long wavelength) limits are examined for certain special cases.
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Kurt Schab, Austin Rothschild, Kristi Nguyen, Miloslav Capek, Lukas Jelinek, Mats Gustafsson. 2020-09-17. Trade-offs in absorption and scattering by nanophotonic structures. https://doi.org/10.1364/oe.410520
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