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基于横向温度梯度的可调谐硅基光子学定向耦合器。

Tunable silicon photonics directional coupler driven by a transverse temperature gradient.

机构信息

Dipartimento di Ingegneria dell'Energia Elettrica e dell'Informazione, Università di Bologna, Bologna, Italy.

出版信息

Opt Lett. 2013 Mar 15;38(6):863-5. doi: 10.1364/OL.38.000863.

Abstract

A compact directional coupler fabricated on a silicon photonic platform is presented, with a power-splitting ratio that can be tuned through a transverse temperature gradient induced by a laterally shifted integrated heater. The tuning mechanism exploits the thermally induced phase velocity mismatch between the coupled modes of the silicon waveguides. The positions of the integrated heater and the waveguide design are optimized to maximize the tuning range and to reduce electric power consumption. Asynchronous devices with an intrinsic phase mismatch are demonstrated to be more efficient, providing a tunable coupled power from 0.7 to 0.01 with 36 mW maximum power dissipation.

摘要

提出了一种在硅光子平台上制作的紧凑型定向耦合器,其分光比可通过横向温度梯度进行调节,该温度梯度由横向移动的集成加热器产生。该调谐机制利用了硅波导耦合模之间的热诱导相速度失配。优化了集成加热器的位置和波导设计,以最大化调谐范围并降低电功率消耗。与具有固有相位失配的异步器件相比,这种器件效率更高,在 36 mW 的最大功率耗散下,可提供从 0.7 到 0.01 的可调谐耦合功率。

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