U.S. Naval Research Laboratory, 4555 Overlook Ave, S.W., Washington, District of Columbia 20375, USA.
School of Physics and Astronomy, University of Manchester, Oxford Rd, Manchester M13 9PL, UK.
Nat Commun. 2014 Oct 17;5:5221. doi: 10.1038/ncomms6221.
Strongly anisotropic media, where the principal components of the dielectric tensor have opposite signs, are called hyperbolic. Such materials exhibit unique nanophotonic properties enabled by the highly directional propagation of slow-light modes localized at deeply sub-diffractional length scales. While artificial hyperbolic metamaterials have been demonstrated, they suffer from high plasmonic losses and require complex nanofabrication, which in turn induces size-dependent limitations on optical confinement. The low-loss, mid-infrared, natural hyperbolic material hexagonal boron nitride is an attractive alternative. Here we report on three-dimensionally confined 'hyperbolic polaritons' in boron nitride nanocones that support four series (up to the seventh order) modes in two spectral bands. The resonant modes obey the predicted aspect ratio dependence and exhibit high-quality factors (Q up to 283) in the strong confinement regime (up to λ/86). These observations assert hexagonal boron nitride as a promising platform for studying novel regimes of light-matter interactions and nanophotonic device engineering.
强各向异性介质,即介电张量的主分量具有相反的符号,被称为双曲型介质。这种材料表现出独特的纳米光子特性,这是由慢光模式在深度亚衍射长度尺度上的高度定向传播所实现的。虽然已经证明了人工双曲超材料的存在,但它们存在着高等离子体损耗和需要复杂的纳米制造的问题,这反过来又导致了对光学限制的尺寸依赖性限制。低损耗、中红外、天然双曲材料六方氮化硼是一种很有吸引力的替代品。在这里,我们报告了在氮化硼纳米锥中存在的三维限制的“双曲极化激元”,它在两个光谱带中支持四个系列(最高到第七阶)模式。共振模式符合预测的纵横比依赖性,并在强限制(最高至 λ/86)下表现出高质量因子(高达 283)。这些观察结果表明,六方氮化硼是研究新型光物质相互作用和纳米光子器件工程的有前途的平台。