论文标题
二维电子气体作为低损坏双曲线材料的基础
Two-Dimensional Electron Gas as a Basis for Low-Loss Hyperbolic Metamaterials
论文作者
论文摘要
双曲线超材料作为光学波导,半导体光发射器和太阳能电池中的成分的实现受到金属层的固有损失的限制。双曲线超材料的特征是存在交替的金属和介电层的特征。这项工作建议,可以使用III二硝酸盐超晶格,其中二维电子气体(2DEG)用作金属层,可以将基于金属双曲线超材料的有害损失特征最小化。
The implementation of hyperbolic metamaterials as component in optical waveguides, semiconductor light emitters and solar cells has been limited by the inherent loss in the metallic layers. The features of a hyperbolic metamaterial arise by the presence of alternating metal and a dielectric layers. This work proposes that the deleterious loss characteristic of metal-based hyperbolic metamaterials can be minimized by employing a III-nitride superlattice wherein a two-dimensional electron gas (2DEG) functions as the metallic layer.