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通过等离子体布拉格反射器和会聚透镜的组合实现近场纳米聚焦。

Near-field nanofocusing through a combination of plasmonic Bragg reflector and converging lens.

作者信息

Song Wentao, Fang Zheyu, Huang Shan, Lin Feng, Zhu Xing

机构信息

School of Physics, State Key Laboratory for Mesoscopic Physics, Peking University, Beijing 100871, China.

出版信息

Opt Express. 2010 Jul 5;18(14):14762-7. doi: 10.1364/OE.18.014762.

Abstract

We report the near-field nanofocusing through a plasmonic lens containing a Bragg reflector and a converging lens, which consist of semitransparent annular grooves milled into a gold film with different periods along the radial direction. By illuminating the structure with a linearly polarized light, two tightly focal spots were detected by scanning near-field optical microscope. This plasmonic lens has considerably reduced direct light transmission, making the focal spots obvious. By raising the radius of half of every groove, one single spot was obtained. Furthermore, theoretical simulations prove that the light intensity of the focal spots can be doubled through adding the Bragg reflector surrounding the converging lens.

摘要

我们报道了通过一种包含布拉格反射器和会聚透镜的等离子体透镜实现的近场纳米聚焦,该透镜由沿径向方向具有不同周期的铣入金膜的半透明环形凹槽组成。通过用线偏振光照射该结构,利用扫描近场光学显微镜检测到了两个紧密的焦点。这种等离子体透镜大大降低了直射光的透射率,使得焦点明显可见。通过增大每个凹槽半径的一半,获得了单个焦点。此外,理论模拟证明,通过在会聚透镜周围添加布拉格反射器,焦点的光强可以加倍。

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