Center for Integrated Nanotechnologies, MS K771, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Science. 2013 Jun 14;340(6138):1304-7. doi: 10.1126/science.1235399. Epub 2013 May 16.
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.
极化是电磁波的基本属性之一,在信号传输和灵敏测量中承载着有价值的信息。先进的极化控制传统方法对材料性能提出了苛刻的要求,并且只能实现有限的性能。我们展示了超薄、宽带、高效的基于超材料的太赫兹偏振转换器,它能够将线性偏振状态旋转为正交偏振状态。基于这些结果,我们创建了能够实现近乎完美的异常折射的超材料结构。我们的工作为创造高性能光子器件开辟了新的机会,并为在技术上具有挑战性的太赫兹频率范围内应用新兴的超材料功能提供了可能。