Pérez Daniel, Gasulla Ivana, Crudgington Lee, Thomson David J, Khokhar Ali Z, Li Ke, Cao Wei, Mashanovich Goran Z, Capmany José
ITEAM Research Institute, Universitat Politècnica de València, Camino de Vera s/n, Valencia, 46022, Spain.
Optoelectronics Research Centre, University of Southampton, Highfield, Southampton, SO17 1BJ, UK.
Nat Commun. 2017 Sep 21;8(1):636. doi: 10.1038/s41467-017-00714-1.
Integrated photonics changes the scaling laws of information and communication systems offering architectural choices that combine photonics with electronics to optimize performance, power, footprint, and cost. Application-specific photonic integrated circuits, where particular circuits/chips are designed to optimally perform particular functionalities, require a considerable number of design and fabrication iterations leading to long development times. A different approach inspired by electronic Field Programmable Gate Arrays is the programmable photonic processor, where a common hardware implemented by a two-dimensional photonic waveguide mesh realizes different functionalities through programming. Here, we report the demonstration of such reconfigurable waveguide mesh in silicon. We demonstrate over 20 different functionalities with a simple seven hexagonal cell structure, which can be applied to different fields including communications, chemical and biomedical sensing, signal processing, multiprocessor networks, and quantum information systems. Our work is an important step toward this paradigm.Integrated optical circuits today are typically designed for a few special functionalities and require complex design and development procedures. Here, the authors demonstrate a reconfigurable but simple silicon waveguide mesh with different functionalities.
集成光子学改变了信息和通信系统的缩放定律,提供了将光子学与电子学相结合以优化性能、功耗、占地面积和成本的架构选择。特定应用的光子集成电路,即设计特定电路/芯片以最佳执行特定功能,需要大量的设计和制造迭代,导致开发时间较长。受电子现场可编程门阵列启发的另一种方法是可编程光子处理器,其中由二维光子波导网格实现的通用硬件通过编程实现不同功能。在此,我们报告了这种硅基可重构波导网格的演示。我们用一个简单的七六边形单元结构演示了20多种不同功能,该结构可应用于通信、化学和生物医学传感、信号处理、多处理器网络和量子信息系统等不同领域。我们的工作是朝着这一范式迈出的重要一步。如今的集成光学电路通常是为少数特殊功能而设计的,并且需要复杂的设计和开发程序。在此,作者展示了一种具有不同功能的可重构但简单的硅波导网格。