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Enhanced energy throughput in corrugated, tapered, metal-coated SNOM probes

机译:增强瓦楞纸,锥形,金属涂层的SNOM探针中的能量产量

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Interest in optical devices that image with superresolution and inherent optical parallelism continues. Recently, the concept of superresolution is pursued along the lines of negative refraction and transparent multilayer, metallo-dielectric photonic band gap structures. Flat superlenses image from the near-field to the near- or far-field with resolution beyond the diffraction limit. There is a need for characterization methods which allow measurement of the point spread function of such devices. Scanning near-field microscopes (SNOMs) measure the field intensity in the vicinity of objects as close as 5 nm due to shear-force technique. Improvement of transversal resolution up to λ/20 may be possible due to considerable improvement of energy throughput of SNOM probes. To this aim we propose to corrugate the dielectric core-metal coating interface of SNOM probes. The corrugations facilitate the excitation of surface plasmons, which enhance the transport of energy to the probe aperture.
机译:对具有超级度和固有的光学并行性的图像的光学器件的兴趣继续。最近,沿着负折射和透明多层电介质光子带隙结构的线路追求超级度的概念。从近场到近乎或远场的平面超标且具有超出衍射极限的分辨率的图像。需要表征方法,其允许测量这些设备的点扩展功能。扫描近场显微镜(SNOM)测量由于剪切力技术,靠近5nm的物体附近的场强度。由于SNOM探针的能量产量相当大,可以提高横向分辨率的改善可能是可能的。为此目的,我们建议在SnOM探针的介质芯金属涂层界面上进行瓦楞。波纹促进了表面等离子体的激发,这增强了能量的输送到探针孔。

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