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All-optical routing and switching for three-dimensional photonic circuitry

机译:三维光子电路的全光路由和交换

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摘要

The ability to efficiently transmit and rapidly process huge amounts of data has become almost indispensable to our daily lives. It turned out that all-optical networks provide a very promising platform to deal with this task. Within such networks opto-optical switches, where light is directed by light, are a crucial building block for an effective operation. In this article, we present an experimental analysis of the routing and switching behaviour of light in two-dimensional evanescently coupled waveguide arrays of Y- and T-junction geometries directly inscribed into fused silica using ultrashort laser pulses. These systems have the fundamental advantage of supporting three-dimensional network topologies, thereby breaking the limitations on complexity associated with planar structures while maintaining a high dirigibility of the light. Our results show how such arrays can be used to control the flow of optical signals within integrated photonic circuits.
机译:有效传输和快速处理大量数据的能力已成为我们日常生活中必不可少的。事实证明,全光网络提供了一个非常有前途的平台来处理此任务。在这样的网络中,光由光引导的光电开关是有效操作的关键组成部分。在本文中,我们对使用超短激光脉冲直接内切到熔融石英中的Y和T结几何形状的二维e逝耦合波导阵列中的光的路由和切换行为进行了实验分析。这些系统具有支持三维网络拓扑的基本优势,从而打破了与平面结构相关的复杂性的限制,同时保持了光的高可分性。我们的结果表明,如何将此类阵列用于控制集成光子电路内的光信号流。

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