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- W2754503562 abstract "Light–matter interactions at a particular point in a material may be dominated by properties of the medium at this point, or they could be affected by the electromagnetic properties of the medium in the surrounding regions. In the former case, the medium is said to be local, while in the latter, it is nonlocal. Recent studies of light–matter interactions in composite optical metamaterials showed that nonlocal effects enable new optical phenomena that are not acounted for by the conventional, local effective medium description. Up until now the majority of studies focused on metamaterials with spatially uniform material parameters. However, optical metamaterials with electromagnetic material parameters gradually changing from positive to negative values, so-called transition materials, have been predicted to induce a strong enhancement of the local electric or magnetic field in the vicinity of the zero refractive index point. This opens new opportunities for sensing and low-intensity nonlinear optical applications. Here, we analyze the field enhancement in realistic transition metamaterials consisting of an array of plasmonic cone-shaped rods embedded in a dielectric matrix and demonstrate that optical nonlocality is required to adequately describe this optical response. This work enables the design and practical applications of this new emerging metamaterial platform." @default.
- W2754503562 created "2017-09-25" @default.
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- W2754503562 date "2017-10-04" @default.
- W2754503562 modified "2023-10-15" @default.
- W2754503562 title "Nonlocal Effects in Transition Hyperbolic Metamaterials" @default.
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- W2754503562 doi "https://doi.org/10.1021/acsphotonics.7b00690" @default.
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