Kavli Nanoscience Institute, California Institute of Technology, MS 128-95, Pasadena, California 91125, USA.
Nat Mater. 2010 May;9(5):407-12. doi: 10.1038/nmat2747. Epub 2010 Apr 18.
Metamaterials are materials with artificial electromagnetic properties defined by their sub-wavelength structure rather than their chemical composition. Negative-index materials (NIMs) are a special class of metamaterials characterized by an effective negative index that gives rise to such unusual wave behaviour as backwards phase propagation and negative refraction. These extraordinary properties lead to many interesting functions such as sub-diffraction imaging and invisibility cloaking. So far, NIMs have been realized through layering of resonant structures, such as split-ring resonators, and have been demonstrated at microwave to infrared frequencies over a narrow range of angles-of-incidence and polarization. However, resonant-element NIM designs suffer from the limitations of not being scalable to operate at visible frequencies because of intrinsic fabrication limitations, require multiple functional layers to achieve strong scattering and have refractive indices that are highly dependent on angle of incidence and polarization. Here we report a metamaterial composed of a single layer of coupled plasmonic coaxial waveguides that exhibits an effective refractive index of -2 in the blue spectral region with a figure-of-merit larger than 8. The resulting NIM refractive index is insensitive to both polarization and angle-of-incidence over a +/-50 degree angular range, yielding a wide-angle NIM at visible frequencies.
超材料是指具有人工电磁特性的材料,其特性由亚波长结构决定,而不是化学成分。负折射率材料(NIM)是超材料的一个特殊类别,其特征在于有效负折射率,从而产生诸如反向相位传播和负折射等异常波行为。这些非凡的特性带来了许多有趣的功能,如亚波长成像和隐形斗篷。到目前为止,NIM 是通过分层谐振结构(如分裂环谐振器)实现的,并且已经在微波到红外频率范围内的窄入射角和偏振角范围内得到了演示。然而,由于固有制造限制,谐振元件 NIM 设计无法扩展到可见光频率下工作,需要多个功能层才能实现强散射,并且折射率高度依赖于入射角和偏振角。在这里,我们报告了一种由单层耦合等离子体同轴波导组成的超材料,该超材料在蓝色光谱区域表现出有效折射率为-2,品质因数大于 8。所得到的 NIM 折射率对偏振和入射角在 +/-50 度角范围内都不敏感,从而在可见光频率下产生宽角度 NIM。