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具有负折射率的三维光学超材料。

Three-dimensional optical metamaterial with a negative refractive index.

作者信息

Valentine Jason, Zhang Shuang, Zentgraf Thomas, Ulin-Avila Erick, Genov Dentcho A, Bartal Guy, Zhang Xiang

机构信息

NSF Nano-scale Science and Engineering Center (NSEC), 3112 Etcheverry Hall, University of California, Berkeley, California 94720, USA.

出版信息

Nature. 2008 Sep 18;455(7211):376-9. doi: 10.1038/nature07247. Epub 2008 Aug 11.

Abstract

Metamaterials are artificially engineered structures that have properties, such as a negative refractive index, not attainable with naturally occurring materials. Negative-index metamaterials (NIMs) were first demonstrated for microwave frequencies, but it has been challenging to design NIMs for optical frequencies and they have so far been limited to optically thin samples because of significant fabrication challenges and strong energy dissipation in metals. Such thin structures are analogous to a monolayer of atoms, making it difficult to assign bulk properties such as the index of refraction. Negative refraction of surface plasmons was recently demonstrated but was confined to a two-dimensional waveguide. Three-dimensional (3D) optical metamaterials have come into focus recently, including the realization of negative refraction by using layered semiconductor metamaterials and a 3D magnetic metamaterial in the infrared frequencies; however, neither of these had a negative index of refraction. Here we report a 3D optical metamaterial having negative refractive index with a very high figure of merit of 3.5 (that is, low loss). This metamaterial is made of cascaded 'fishnet' structures, with a negative index existing over a broad spectral range. Moreover, it can readily be probed from free space, making it functional for optical devices. We construct a prism made of this optical NIM to demonstrate negative refractive index at optical frequencies, resulting unambiguously from the negative phase evolution of the wave propagating inside the metamaterial. Bulk optical metamaterials open up prospects for studies of 3D optical effects and applications associated with NIMs and zero-index materials such as reversed Doppler effect, superlenses, optical tunnelling devices, compact resonators and highly directional sources.

摘要

超材料是人工设计的结构,具有诸如负折射率等天然材料所不具备的特性。负折射率超材料(NIMs)最初是在微波频率下得到证实的,但设计用于光频的NIMs一直具有挑战性,而且由于制造方面的重大挑战以及金属中的强能量耗散,到目前为止它们仅限于光学薄样品。这种薄结构类似于单层原子,使得难以赋予诸如折射率等体性质。表面等离激元的负折射最近得到了证实,但仅限于二维波导。三维(3D)光学超材料最近受到了关注,包括通过使用层状半导体超材料和红外频率下的三维磁性超材料实现负折射;然而,这些材料都没有负折射率。在这里,我们报道了一种具有负折射率且品质因数高达3.5(即低损耗)的三维光学超材料。这种超材料由级联的“渔网”结构制成,在很宽的光谱范围内都存在负折射率。此外,它可以很容易地从自由空间进行探测,使其适用于光学器件。我们构建了一个由这种光学NIM制成的棱镜,以证明在光频下的负折射,这明确是由超材料内部传播的波的负相位演化导致的。体光学超材料为与NIMs和零折射率材料相关的三维光学效应研究及应用开辟了前景,如逆多普勒效应、超透镜、光学隧道器件、紧凑型谐振器和高定向源。

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