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用于可扩展可编程光子学的硅光子微机电移相器。

Silicon photonic microelectromechanical phase shifters for scalable programmable photonics.

作者信息

Edinger Pierre, Takabayashi Alain Yuji, Errando-Herranz Carlos, Khan Umar, Sattari Hamed, Verheyen Peter, Bogaerts Wim, Quack Niels, Gylfason Kristinn B

出版信息

Opt Lett. 2021 Nov 15;46(22):5671-5674. doi: 10.1364/OL.436288.

Abstract

Programmable photonic integrated circuits are emerging as an attractive platform for applications such as quantum information processing and artificial neural networks. However, current programmable circuits are limited in scalability by the lack of low-power and low-loss phase shifters in commercial foundries. Here, we demonstrate a compact phase shifter with low-power photonic microelectromechanical system (MEMS) actuation on a silicon photonics foundry platform (IMEC's iSiPP50G). The device attains (2.9±) phase shift at 1550 nm, with an insertion loss of (0.33-0.10+0.15), a of (10.7-1.4+2.2), and an of (17.2-4.3+8.8)µ. We also measured an actuation bandwidth of 1.03 MHz in air. We believe that our demonstration of a low-loss and low-power photonic MEMS phase shifter implemented in silicon photonics foundry compatible technology lifts a main roadblock toward the scale-up of programmable photonic integrated circuits.

摘要

可编程光子集成电路正在成为量子信息处理和人工神经网络等应用的一个有吸引力的平台。然而,由于商业代工厂缺乏低功耗和低损耗的移相器,目前的可编程电路在可扩展性方面受到限制。在此,我们展示了一种在硅光子代工厂平台(imec的iSiPP50G)上通过低功耗光子微机电系统(MEMS)驱动实现的紧凑型移相器。该器件在1550 nm处实现了(2.9±)的相移,插入损耗为(0.33 - 0.10 + 0.15),品质因数为(10.7 - 1.4 + 2.2),功耗为(17.2 - 4.3 + 8.8)μ。我们还在空气中测量了1.03 MHz的驱动带宽。我们相信,我们在与硅光子代工厂兼容的技术中实现的低损耗和低功耗光子MEMS移相器的演示,消除了可编程光子集成电路扩大规模的一个主要障碍。

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