4.6 Article

Three-Dimensional Infrared Metamaterial with Asymmetric Transmission

期刊

ACS PHOTONICS
卷 2, 期 2, 页码 287-294

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ph5003818

关键词

metamaterials; chiral media; split-cube resonators; asymmetric transmission; direct laser writing

资金

  1. Greek GSRT project ERC02-EXEL
  2. 3DSET THALIS Program of the Hellenic Ministry of Education [MIS380278]
  3. Department of Energy (Basic Energy Sciences, Division of Materials Sciences and Engineering) [DE-AC02-07CH11358]

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A novel three-dimensional (3D) metallic metamaterial structure with asymmetric transmission for linear polarization is demonstrated in the infrared spectral region. The structure was fabricated by direct laser writing and selective electroless silver coating, a straightforward, novel technique producing mechanically and chemically stable 3D photonic structures. The structure unit cell is composed of a pair of conductively coupled magnetic resonators, and the asymmetric transmission response results from interplay of electric and magnetic responses; this equips the structure with almost total opaqueness along one propagation direction versus satisfying transparency along the opposite one. It also offers easily adjustable impedance, 90 degrees one-way pure optical activity and backward propagation possibility, resulting thus in unique capabilities in polarization control and isolation applications. We show also that scaling down the structure can make it capable of exhibiting its asymmetric transmission and its polarization capabilities in the optical region.

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