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基于非对称多模干涉的任意比例1×2功率分配器。

Arbitrary-ratio 1 × 2 power splitter based on asymmetric multimode interference.

作者信息

Deng Qingzhong, Liu Lu, Li Xinbai, Zhou Zhiping

出版信息

Opt Lett. 2014 Oct 1;39(19):5590-3. doi: 10.1364/OL.39.005590.

Abstract

Free choice of splitting ratio is one of the main properties of a power splitter required in integrated photonics, but conventional multimode interference (MMI) power splitters can only obtain a few discrete ratios. This Letter presents both numerical and experimental results of an arbitrary-ratio 1×2 MMI power splitter, which is constructed by simply breaking the symmetry of the multimode region. In the new device, the power splitting ratio can be adjusted continuously from 100:0 to 50:50, while the dimension of the multimode section stays in the range of 1.5×(1.8-2.8)  μm. The experimental data also indicate that the proposed arbitrary-ratio splitter keeps the original advantages of MMI devices, such as low excess loss, weak wavelength dependence, and large fabrication tolerance.

摘要

自由选择分光比是集成光子学中功率分配器所需的主要特性之一,但传统的多模干涉(MMI)功率分配器只能获得少数几个离散的分光比。本文给出了一种任意分光比1×2 MMI功率分配器的数值和实验结果,该分配器通过简单地破坏多模区域的对称性来构建。在新器件中,分光比可在100:0至50:50之间连续调节,而多模部分的尺寸保持在1.5×(1.8 - 2.8)μm范围内。实验数据还表明,所提出的任意分光比分光器保留了MMI器件的原有优点,如低附加损耗、弱波长依赖性和大制造容差。

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