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Self-assembly of three-dimensional photonic-crystals with air-core line defects

机译:具有空芯线缺陷的三维光子晶体的自组装

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摘要

We have introduced line defects into a three-dimensional (3D) photonic crystal by combining the techniques of optical photolithography, self-assembly, and template replication. The template is a colloidal crystal film that is grown on a silicon or glass substrate patterned with photoresist lines, and the 3D photonic crystal with air-core line defects is obtaind by infiltrating the colloidal crystal film with silica and removing the template by calcination. SEM and optical transmission spectra show that the resulting 3D PC structure has high structural integrity and crystalline quality. This approach can introduce defects at the desired places of 3D photonic crystals, which may be useful in making 3D photonic crystal-based air-core waveguides.
机译:通过结合光学光刻,自组装和模板复制技术,我们将线缺陷引入了三维(3D)光子晶体中。模板是在用光致抗蚀剂线图案化的硅或玻璃基板上生长的胶体晶体膜,并且通过用硅胶渗透胶体晶体膜并通过煅烧除去模板而获得具有空芯线缺陷的3D光子晶体。 SEM和光学透射光谱表明,所得的3D PC结构具有高的结构完整性和晶体质量。这种方法会在3D光子晶体的所需位置引入缺陷,这可能在制造基于3D光子晶体的空芯波导中很有用。

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