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- W2114725128 abstract "Metamaterials enable a number of intriguing photonic functionalities from superlensing to cloaking. The demonstration of truly three-dimensional metamaterials by a direct laser writing process offers the possibility of complex photonic functionalities at optical frequencies. Metamaterials are artificial materials that—unlike natural substances—enable magnetism to be achieved at optical frequencies1,2,3. The vast majority of photonic metamaterials4,5 has been fabricated by electron-beam lithography and evaporation of metal films, both of which are well-established two-dimensional (2D) technologies. Although stacking of three6 or four7 functional layers made using these methods has been reported, a truly 3D fabrication approach would be preferable for 3D photonic metamaterials. Here, we report first steps in this direction by using a combination of direct laser writing8,9 and silver chemical vapour deposition10,11—the 3D analogues of electron-beam lithography and evaporation, respectively. The optical characterization of a planar test structure composed of elongated split-ring resonators is in good agreement with theory. Retrieval of the effective optical parameters reveals the importance of bi-anisotropy. Once suitable theoretical blueprints are available, our fabrication approach will enable rapid prototyping of truly 3D photonic metamaterials." @default.
- W2114725128 created "2016-06-24" @default.
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- W2114725128 date "2008-05-11" @default.
- W2114725128 modified "2023-10-18" @default.
- W2114725128 title "Photonic metamaterials by direct laser writing and silver chemical vapour deposition" @default.
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- W2114725128 doi "https://doi.org/10.1038/nmat2197" @default.
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