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Dark-field hyperlens for high-contrast sub-wavelength imaging

机译:暗场超透镜用于高对比度亚波长成像

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摘要

By now superresolution imaging using hyperbolic metamaterial (HMM) structures – hyperlenses – has been demonstrated both theoretically and experimentally. The hyperlens operation relies on the fact that HMM allows propagation of waves with very large transverse wavevectors, which would be evanescent in common isotropic media (thus giving rise to the diffraction limit). However, nearly all hyperlenses proposed so far have been suitable only for very strong scatterers – such as holes in a metal film. When weaker scatterers, dielectric objects for example, are imaged then incident light forms a very strong background, and weak scatterers are not visible due to a poor contrast. We propose a so-called dark-field hyperlens, which would be suitable for imaging of weakly scattering objects. By designing parameters of the HMM, we managed to obtain its response in such way that the hyperlens structure exhibits a cut-off for waves with small transverse wavevectors (low-k waves). This allows the structure to filter out the background illumination, which is contained in low-k waves. We numerically demonstrate that our device achieves superresolution imaging while providing the strong contrast for weak dielectric scatterers. These findings hold a great promise for dark-field superresolution, which could be important in real-time dynamic nanoscopy of label-free biological objects for example. © (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:到目前为止,理论和实验都证明了使用双曲线超材料(HMM)结构(超透镜)的超分辨率成像。超透镜操作依赖于以下事实:HMM允许传播具有非常大的横向波矢的波,这在常见的各向同性介质中将是渐逝的(因此会引起衍射极限)。但是,到目前为止,几乎所有提议的超透镜都仅适用于非常强的散射体,例如金属膜中的孔。当较弱的散射体(例如介电物体)成像时,入射光会形成非常强的背景,并且由于对比度差,较弱的散射体将不可见。我们提出了一种所谓的暗场超透镜,它适合于弱散射物体的成像。通过设计HMM的参数,我们设法获得其响应,使得超透镜结构对具有较小横向波矢量(低k波)的波表现出截止。这允许该结构滤除包含在低k波中的背景照明。我们用数值方法证明了我们的设备能够实现超分辨率成像,同时为弱电介质散射体提供强大的对比度。这些发现为暗场超分辨率提供了广阔的前景,例如,在无标签生物物体的实时动态纳米显微镜检查中可能非常重要。 ©(2016)版权,光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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