Pérez-López Daniel, Gutierrez Ana, Sánchez David, López-Hernández Aitor, Gutierrez Mikel, Sánchez-Gomáriz Erica, Fernández Juan, Cruz Alejandro, Quirós Alberto, Xie Zhenyun, Benitez Jesús, Bekesi Nandor, Santomé Alejandro, Pérez-Galacho Diego, DasMahapatra Prometheus, Macho Andrés, Capmany José
Photonics Research Labs, iTEAM Research Institute, Universitat Politècnica de València, Valencia, Spain.
iPronics, Programmable Photonics, Valencia, Spain.
Nat Commun. 2024 Feb 20;15(1):1563. doi: 10.1038/s41467-024-45888-7.
A general-purpose photonic processor can be built integrating a silicon photonic programmable core in a technology stack comprising an electronic monitoring and controlling layer and a software layer for resource control and programming. This processor can leverage the unique properties of photonics in terms of ultra-high bandwidth, high-speed operation, and low power consumption while operating in a complementary and synergistic way with electronic processors. These features are key in applications such as next-generation 5/6 G wireless systems where reconfigurable filtering, frequency conversion, arbitrary waveform generation, and beamforming are currently provided by microwave photonic subsystems that cannot be scaled down. Here we report the first general-purpose programmable processor with the remarkable capability to implement all the required basic functionalities of a microwave photonic system by suitable programming of its resources. The processor is fabricated in silicon photonics and incorporates the full photonic/electronic and software stack.
一种通用光子处理器可以通过将硅光子可编程核心集成到一个技术堆栈中构建而成,该技术堆栈包括电子监控和控制层以及用于资源控制和编程的软件层。这种处理器在以与电子处理器互补和协同的方式运行时,可以利用光子学在超高带宽、高速运行和低功耗方面的独特特性。这些特性在下一代5/6G无线系统等应用中至关重要,在这些系统中,可重构滤波、频率转换、任意波形生成和波束形成目前由无法缩小规模的微波光子子系统提供。在此,我们报告了首个通用可编程处理器,它具有通过对其资源进行适当编程来实现微波光子系统所有所需基本功能的卓越能力。该处理器采用硅光子学制造,并集成了完整的光子/电子和软件堆栈。