论文标题

具有高度限制模式的纳米结构光学波导

Nanostructured optical waveguide with a highly confined mode

论文作者

Chubchev, E. D., Nechepurenko, I. A., Dorofeenko, A. V., Vinogradov, A. P., Lisyansky, Alexander A.

论文摘要

我们提出了一条在电信波长的传输线,横截面小至$λ^2/39 $,比优化的硅波导小1.6倍。所提出的线可以作为带等离子覆层的亚波纤维实现。线横截面的大幅下降是通过利用等离子准抗对称模式来实现的。所需的等离子覆层相当细,因此,损失是中等的,可以使用放大核心材料来补偿。这样的传输线可以在密度集成的光学系统中找到应用。

We propose a transmission line working at telecom wavelengths with cross section as small as $λ^2/39$, which is 1.6 times smaller than that of optimized silicon waveguide. The proposed line can be implemented as a subwavelength fiber with plasmonic cladding. This considerable decrease in the line cross section is achieved by utilizing a plasmonic quasi-antisymmetric mode. The required plasmonic cladding is rather thin, therefore, losses are moderate and could be compensated by using amplifying core materials. Such a transmission line can find applications in densely integrated optical systems.

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