二维平面上的环面超曲面

Q1 Physics and Astronomy
Manoj Gupta , Ranjan Singh
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引用次数: 35

摘要

环形偶极子是一种不同于传统电偶极子和磁偶极子的新型电磁激励。环面偶极子是用环面表面的极向电流来描述的,为在超表面单元胞内通过近场耦合机制或辐射抵消方法控制辐射损失开辟了一条新途径。辐射损耗工程在超材料是最基本的要求之一,以衡量变形器件的适用性为特定的按需应用。在这里,我们讨论了在平面超表面激发环面偶极模式的策略,这些模式最初被认为只存在于三维(3D)排列中。二维(2D)环面超表面是三维环面结构的概念简化,这在微纳米尺度上提出了制造挑战。我们进一步讨论了电偶极子和环形偶极子之间的相消干涉,以仿极点激励的形式实现非辐射模式,满足了极大质量因数共振的激励要求。总的来说,环形偶极子的有趣特征可能对共振超材料的设计具有重要意义,这对于开发低损耗传感器、调制器、滤波器和用于强光物质相互作用的有效腔体非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toroidal metasurfaces in a 2D flatland

A toroidal dipole is a new class of electromagnetic excitations and are different from traditional electric and magnetic dipoles. Toroidal dipoles are described by the poloidal currents flowing on the surface of torus and have opened a new route to control radiative losses via near field coupling mechanism or radiation cancellation approach in the unit cell of metasurface. Radiative loss engineering in metamaterials is one of the most fundamental requirements to gauge the suitability of a metaphotonic device for a specific on-demand application. Here, we discuss strategies to excite toroidal dipolar modes in a planar metasurface which were initially thought to exist only in three-dimensional (3D) arrangements. Two dimensional (2D) toroidal metasurfaces are conceptual simplification of 3D toroid configurations, which pose fabrication challenges at micro-nanoscales. We further discuss the destructive interference between electric and toroidal dipoles to realize non-radiating modes in the form of an anapole excitation that fulfills the requirement for the excitation of extremely large quality factor resonances. Overall, the intriguing features of a toroidal dipole could have significant implications on the design of resonant metamaterials that are important for the development of low-loss sensors, modulators, filters, and efficient cavities for strong light matter interactions.

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来源期刊
Reviews in Physics
Reviews in Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
21.30
自引率
0.00%
发文量
8
审稿时长
98 days
期刊介绍: Reviews in Physics is a gold open access Journal, publishing review papers on topics in all areas of (applied) physics. The journal provides a platform for researchers who wish to summarize a field of physics research and share this work as widely as possible. The published papers provide an overview of the main developments on a particular topic, with an emphasis on recent developments, and sketch an outlook on future developments. The journal focuses on short review papers (max 15 pages) and these are freely available after publication. All submitted manuscripts are fully peer-reviewed and after acceptance a publication fee is charged to cover all editorial, production, and archiving costs.
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