Merlin R
Department of Physics, The University of Michigan, Ann Arbor, MI 48109-1040, USA.
Science. 2007 Aug 17;317(5840):927-9. doi: 10.1126/science.1143884. Epub 2007 Jul 12.
Diffraction restricts the ability of most electromagnetic devices to image or selectively target objects smaller than the wavelength. We describe planar subwavelength structures capable of focusing well beyond the diffraction limit, operating at arbitrary frequencies. The structure design, related to that of Fresnel plates, forces the input field to converge to a spot on the focal plane. However, unlike the diffraction-limited zone plates, for which focusing results from the interference of traveling waves, the subwavelength plates control the near field and, as such, their superlensing properties originate from a static form of interference. Practical implementations of these plates hold promise for near-field data storage, noncontact sensing, imaging, and nanolithography applications.
衍射限制了大多数电磁设备对小于波长的物体进行成像或选择性靶向的能力。我们描述了一种平面亚波长结构,它能够在任意频率下工作,实现远超衍射极限的聚焦。这种结构设计与菲涅耳透镜相关,可使输入场汇聚到焦平面上的一个点。然而,与行波干涉产生聚焦的衍射极限波带片不同,亚波长透镜控制近场,因此其超透镜特性源自一种静态干涉形式。这些透镜的实际应用有望用于近场数据存储、非接触传感、成像和纳米光刻等领域。