论文标题

三维电磁空空间

Three-dimensional Electromagnetic Void Space

论文作者

Xu, Changqing, Chu, Hongchen, Luo, Jie, Hang, Zhi Hong, Wu, Ying, Lai, Yun

论文摘要

我们报告了三维(3D)电磁空间的实现。尽管占据了有限的空间,但这种培养基在光学上等同于无穷小点,即电磁波没有相位积累。 3D空间可以通过构建全dielectric 3D光子晶体来实现,从而使有效的介电常数和渗透率同时消失,形成一个六倍的狄拉克样点,并在布里群区域的中心具有狄拉克(Dirac)的线性分散体。我们在理论上和实验上都证明,这种3D空间在任何其他电磁介质中都表现出独特的特性和丰富的功能,例如边界对照传输开关和3D完美波动机制。特别是,与光子“掺杂”效应相反,3D空间表现出“杂质 - 免疫性”的惊人特性。我们的作品铺平了一条通往3D空间空间的道路,在该空间中,可以以前所未有的方式操纵电磁波。

We report a realization of three-dimensional (3D) electromagnetic void space. Despite occupying a finite volume of space, such a medium is optically equivalent to an infinitesimal point where electromagnetic waves experience no phase accumulation. The 3D void space is realized by constructing all-dielectric 3D photonic crystals such that the effective permittivity and permeability vanish simultaneously, forming a six-fold Dirac-like point with Dirac-like linear dispersions at the center of the Brillouin Zone. We demonstrate, both theoretically and experimentally, that such a 3D void space exhibits unique properties and rich functionalities absent in any other electromagnetic media, such as boundary-control transmission switching and 3D perfect wave-steering mechanisms. Especially, contrary to the photonic "doping" effect in its two-dimensional counterpart, the 3D void space exhibits an amazing property of "impurity-immunity". Our work paves a road towards the realization of 3D void space where electromagnetic waves can be manipulated in unprecedented ways.

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