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The research and progress of micro-fabrication technologies of two-dimensional photonic crystal

机译:二维光子晶体微细加工技术的研究与进展

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摘要

The novel material of photonic crystal makes it possible to control a photon, and the photonic integration will have breakthrough progress due to the application of photonic crystal. It is based on the photonic crystal device that the photonic crystal integration could be realized. Therefore, we should first investigate photonic crystal devices based on the active and the passive semiconductor materials, which may have great potential application in photonic integration. The most practical and important method to fabricate two-dimensional photonic crystal is the micro-manufacture method. In this paper, we summarize and evaluate the fabrication methods of two-dimensional photonic crystal in near-infrared region, including electron beam lithography, selection of mask, dry etching, and some works of ours. This will be beneficial to the study of the photonic crystal in China.
机译:光子晶体的新型材料使得控制光子成为可能,并且由于光子晶体的应用,光子集成将取得突破性进展。基于光子晶体器件,可以实现光子晶体集成。因此,我们应该首先研究基于有源和无源半导体材料的光子晶体器件,这些器件在光子集成中可能具有很大的应用前景。制造二维光子晶体的最实用,最重要的方法是微制造方法。在本文中,我们总结并评估了近红外区域二维光子晶体的制造方法,包括电子束光刻,掩模的选择,干法蚀刻以及我们的一些工作。这将有利于中国光子晶体的研究。

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