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Photonic Applications of Metal-Dielectric Heterostructured Nanomaterials

机译:金属介电异质结构纳米材料的光子应用

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摘要

Metal materials, supporting plasmon modes on their surface, can confine the optical field at deep subwavelength scale, which is desired for photonic integration. However, their intrinsic high Ohmic losses make it impossible to construct the whole circuit solely with the metal materials. Integrating the plasmonic components with dielectric materials may offer a solution to this dilemma. With outstanding active optical performance, these dielectric components not only can greatly reduce the optical losses of the entire circuits but also offer an efficient way to launch the surface plasmon polaritons through the evanescent field coupling or the direct exciton-plasmon conversion. Furthermore, the cooperative interaction between metal and dielectric materials would bring vast novel optical phenomena and functional photonic devices. In this review, the synergistic effects among metal and dielectric materials in various heterostructures as well as their related applications are highlighted. Comprehensive understanding on their synergistic interactions would offer useful guidance for the design and fabrication of the ultracompact novel optical devices.
机译:金属材料在其表面上支持等离激元模式,可以将光场限制在深亚波长范围内,这是光子集成所需的。然而,它们固有的高欧姆损耗使得不可能仅用金属材料来构造整个电路。将等离激元组件与介电材料集成在一起可以解决这一难题。这些介电元件具有出色的有源光学性能,不仅可以大大降低整个电路的光损耗,而且还提供了一种通过van逝场耦合或直接激子-等离激元转换来发射表面等离激元极化子的有效方法。此外,金属和介电材料之间的协同相互作用将带来大量新颖的光学现象和功能性光子器件。在这篇综述中,重点介绍了金属和介电材料在各种异质结构中的协同效应及其相关应用。对它们的协同相互作用的全面理解将为超紧凑型新型光学器件的设计和制造提供有用的指导。

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