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环形超材料开关。

A Toroidal Metamaterial Switch.

机构信息

Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.

Centre for Disruptive Photonic Technologies, The Photonics Institute, Nanyang Technological University, Singapore, 637371, Singapore.

出版信息

Adv Mater. 2018 Jan;30(4). doi: 10.1002/adma.201704845. Epub 2017 Dec 6.

Abstract

Toroidal dipole is a localized electromagnetic excitation that plays an important role in determining the fundamental properties of matter due to its unique potential to excite nearly nonradiating charge-current configuration. Toroidal dipoles are recently discovered in metamaterial systems where it is shown that these dipoles manifest as poloidal currents on the surface of a torus and are distinctly different from the traditional electric and magnetic dipoles. Here, an active toroidal metamaterial switch is demonstrated in which the toroidal dipole can be dynamically switched to the fundamental electric dipole or magnetic dipole, through selective inclusion of active elements in a hybrid metamolecule design. Active switching of nonradiating toroidal configuration into highly radiating electric and magnetic dipoles can have significant impact in controlling the electromagnetic excitations in free space and matter that can have potential applications in designing efficient lasers, sensors, filters, and modulators.

摘要

环形偶极子是一种局域电磁场激发,由于其独特的激发近非辐射电荷电流结构的能力,在确定物质的基本性质方面起着重要作用。环形偶极子最近在超材料系统中被发现,在那里表明这些偶极子表现为环面上的极电流,并且与传统的电偶极子和磁偶极子明显不同。在这里,展示了一种主动环形超材料开关,通过在混合超分子设计中选择性地包含有源元件,可以将环形偶极子动态切换为基本电偶极子或磁偶极子。将非辐射环形结构主动切换为高辐射电偶极子和磁偶极子,可显著影响对自由空间和物质中电磁激发的控制,这在设计高效激光器、传感器、滤波器和调制器方面具有潜在应用。

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