Related Experiment Video
Updated: Sep 18, 2026

Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
Photonic integrated computing engine for concurrent optical computing
Ruiqi Zheng1,2, Sheng Dong1,2, Huan Rao1,2
1Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communication, Institute of Photonics Technology, Jinan University, Guangzhou, 510632, China.
Abstract:
Optical networks with parallel processing capabilities advance high-speed computing and large-scale data processing by providing ultrawide computational bandwidth. In this paper, we present a photonic integrated processor that can be segmented into multiple functional blocks, enabling compact and reconfigurable matrix operations for parallel computational tasks. Fabricated on a silicon-on-insulator platform, the processor supports reconfigurable optical matrix operations of various sizes, offering flexibility and scalability. Specifically, it performs optical convolution operations with three-channel 1×1 and 2×2 real-valued convolution kernels implemented in distinct blocks. The multichannel 1×1 convolution is experimentally validated using a deep residual U-Net for precise segmentation of pneumonia lesions in lung computed tomography images. The 2×2 convolution is validated through an optical convolution layer integrated with an electrical fully connected layer for ten-class classification of handwritten digits. The processor features high scalability and robust parallel computing capability, positioning it as a promising candidate for optical neural networks.
Related Concept Videos
Parallel Processing
Ampere-Maxwell's Law: Problem-Solving
To solve the problem, we can use the equations from the analysis of an RC circuit and Maxwell's version of Ampère's law.
For the first part of the problem,...
Semiconductors
Metals such as copper (Cu), zinc (Zn), or lead (Pb) have low resistivity and feature conduction bands that are either not fully occupied or overlap with the valence band, making a bandgap non-existent. This allows electrons in the highest energy levels of the valence band to easily transition to the conduction band upon gaining...

