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An all-optical spatial light modulator for reconfigurable silicon photonic circuits

机译:一种用于可重构的全光空间光调制器 硅光子电路

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摘要

Reconfigurable photonic devices capable of routing the flow of light enable flexible integrated-optic circuits that are not hardwired but can be externally controlled. Analogous to free-space spatial light modulators, we demonstrate all-optical wavefront shaping in integrated silicon-on-insulator photonic devices by modifying the spatial refractive index profile of the device employing ultraviolet pulsed laser excitation. Applying appropriate excitation patterns grants us full control over the optical transfer function of telecommunication-wavelength light traveling through the device, thus allowing us to redefine its functionalities. As a proof of concept, we experimentally demonstrate the routing of light between the ports of a multimode interference power splitter with more than 97% total efficiency and negligible losses. Wavefront shaping in integrated photonic circuits provides a conceptually new approach toward achieving highly adaptable and field-programmable photonic circuits with applications in optical testing and data communication.
机译:能够路由光流的可重配置光子设备可实现灵活的集成光学电路,该电路无需硬连线,但可以从外部进行控制。类似于自由空间空间光调制器,我们通过使用紫外脉冲激光激发来修改器件的空间折射率分布,从而证明了集成绝缘体上硅光子器件中的全光波前成形。应用适当的激励模式可以使我们完全控制穿过设备的电信波长光的光学传递函数,从而使我们可以重新定义其功能。作为概念验证,我们通过实验证明了多模干扰功率分配器的端口之间的光路由,总效率超过97%,损耗可忽略不计。集成光子电路中的波前整形为在光学测试和数据通信中的应用提供了一种概念上新的方法,以实现高度适应和现场可编程的光子电路。

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