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Polarization is one of the basic properties of electromagnetic waves conveying valuable information in signal transmission and sensitive measurements. Conventional methods for advanced polarization control impose demanding requirements on material properties and attain only limited performance. We demonstrated ultrathin, broadband, and highly efficient metamaterial-based terahertz polarization converters that are capable of rotating a linear polarization state into its orthogonal one. On the basis of these results, we created metamaterial structures capable of realizing near-perfect anomalous refraction. Our work opens new opportunities for creating high-performance photonic devices and enables emergent metamaterial functionalities for applications in the technologically difficult terahertz-frequency regime.
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Nathaniel K. Grady
Los Alamos National Laboratory
Jane E. Heyes
Massachusetts Institute of Technology
Dibakar Roy Chowdhury
Advanced Numerical Research and Analysis Group
Science
Los Alamos National Laboratory
Center for Integrated Nanotechnologies
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Grady et al. (Fri,) studied this question.
synapsesocial.com/papers/69d7e6b0f39344339dd18cac — DOI: https://doi.org/10.1126/science.1235399