集成硅光子学

Zhuoran Fang, Jiajiu Zheng, Peipeng Xu, A. Majumdar
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引用次数: 2

摘要

传统的调谐硅光子网络的方法主要是基于硅的热光效应或自由载流子效应。这些方法的缺点是易挥发性和复折射率变化极小(Δn<0.01)。为了在诸如光子存储器或计算等应用中实现低能耗和更小的占地面积,系统的两种光学状态必须具有高光学对比度并保持非易失性。像GST这样的相变材料提供了一种解决方案,因为它在两种非挥发性晶体状态之间表现出强烈的折射率对比,可以可逆地切换。在这里,我们首先展示了GST可以与硅环谐振器集成,以展示消光比高达33dB的准连续光开关。其次,我们展示了gst集成1×2和2×2硅光子开关,使用三波导耦合器设计,具有低插入损耗约1dB和紧凑的耦合长度约30μm。在30nm的带宽上,串扰小至-10dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GST integrated silicon photonics
The traditional ways of tuning a Silicon photonic network are mainly based on the thermal-optic effect or the free carrier effect of silicon. The drawbacks of these methods are the volatile nature and the extremely small change in the complex refractive index (Δn<0.01). In order to achieve low energy consumption and smaller footprint for applications such as photonic memories or computing, it is essential that the two optical states of the system exhibit high optical contrast and remain non-volatile. Phase change materials such as GST provide a solution in that it exhibits drastic contrast in refractive index between the two non-volatile crystallographic states which can be switched reversibly. Here, we first show that GST can be integrated with a Si ring resonator to demonstrate a quasi-continuous optical switch with extinction ratio as high as 33dB. Secondly, we demonstrated GST-integrated 1×2 and 2×2 Si photonic switches using a three-waveguide coupler design which exhibits a low insertion loss of ~1dB and a compact coupling length of ~30μm. The crosstalk is as small as -10dB over a bandwidth of 30nm.
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