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A novel nano-probe design in silicon and gallium-based alloys using photonic crystals

机译:使用光子晶体在硅和镓基合金中进行新颖的纳米探针设计

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摘要

In this paper we demonstrate the design, fabrication, and characterization of a near-field photonic crystal nano-probe. By exploiting the ability of photonic crystals to strongly confine and guide light, we are able to produce optical spot sizes that are well below the diffraction limit. This offers in particular the advantage of higher resolution as compared to conventional optical probing techniques, while retaining the desirable features of speed, non-invasiveness, reliability, and low cost. Such a device has applications in scanning near-field optical microscopy (SNOM), nanolithography, high density optical data storage, and many other technologies. We describe the implementation of a photonic crystal device in the silicon-on-insulator (SOI) platform, as well as discuss progress being made in gallium-based alloys to further reduce the wavelength of operation and therefore the probe spot size.
机译:在本文中,我们演示了近场光子晶体纳米探针的设计,制造和表征。通过利用光子晶体强烈限制和引导光的能力,我们能够产生远低于衍射极限的光斑尺寸。与常规的光学探测技术相比,这特别提供了更高的分辨率的优点,同时保留了速度,非侵入性,可靠性和低成本的理想特征。这种设备在扫描近场光学显微镜(SNOM),纳米光刻,高密度光学数据存储和许多其他技术中具有应用。我们描述了在绝缘体上硅(SOI)平台上实现光子晶体器件的方法,并讨论了在镓基合金中取得的进展,以进一步减小工作波长,从而减小探针的光斑尺寸。

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