论文标题

基于直流kerr效应的硅光子调制器的低温操作

Cryogenic operation of silicon photonic modulators based on DC Kerr effect

论文作者

Chakraborty, Uttara, Carolan, Jacques, Clark, Genevieve, Bunandar, Darius, Notaros, Jelena, Watts, Michael R., Englund, Dirk R.

论文摘要

光子整合电路在低温温度下的可靠操作将为新兴计算平台(例如量子技术和低功率低温计算)提供新的功能。硅在绝缘子平台上是一种高度有希望的方法,用于开发大规模的光子集成电路,因为它具有出色的制造性,CMOS兼容性和高组件密度。然而,在硅的低温温度下,快速,高效和低损失调制仍然是一个突出的挑战,尤其是在不添加异国情调的非线性光学材料的情况下。在本文中,我们在GHz速度下的温度下,在CMOS过程中专门制造的硅光子设备中,在GHz速度下的温度下,基于DC-KERR效应的调制。这项工作为在大规模光子集成电路中集成DC KERR调制器的路径开辟了道路,以用于新兴的低温经典和量子计算应用。

Reliable operation of photonic integrated circuits at cryogenic temperatures would enable new capabilities for emerging computing platforms, such as quantum technologies and low-power cryogenic computing. The silicon-on-insulator platform is a highly promising approach to developing large-scale photonic integrated circuits due to its exceptional manufacturability, CMOS compatibility and high component density. Fast, efficient and low-loss modulation at cryogenic temperatures in silicon, however, remains an outstanding challenge, particularly without the addition of exotic nonlinear optical materials. In this paper, we demonstrate DC-Kerr-effect-based modulation at a temperature of 5 K at GHz speeds, in a silicon photonic device fabricated exclusively within a CMOS process. This work opens up the path for the integration of DC Kerr modulators in large-scale photonic integrated circuits for emerging cryogenic classical and quantum computing applications.

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