This open access book presents an overview of recent advances in photonic neural networks with spatiotemporal dynamics. The computing and implementation paradigms presented in this book are outcomes of interdisciplinary studies by collaborative researchers from the three fields of nonlinear mathematical science, information photonics, and integrated systems engineering. This book offers novel multidisciplinary viewpoints on photonic neural networks, illustrating recent advances in three types of computing methodologies: fluorescence energy transfer computing, spatial-photonic spin system, and photonic reservoir computing.
The book consists of four parts: Part I introduces the backgrounds of optical computing and neural network dynamics; Part II presents fluorescence energy transfer computing, a novel computing technology based on nanoscale networks of fluorescent particles; Parts III and IV review the models and implementation of spatial-photonic spin systems and photonic reservoir computing, respectively.
These contents are beneficial to researchers in a broad range of fields, including information science, mathematical science, applied physics, and engineering, to better understand the novel computing concepts of photonic neural networks with spatiotemporal dynamics.
Conditions of Use
This book is licensed under a Creative Commons License (CC BY). You can download the ebook Photonic Neural Networks with Spatiotemporal Dynamics for free.
- Title
- Photonic Neural Networks with Spatiotemporal Dynamics
- Subtitle
- Paradigms of Computing and Implementation
- Publisher
- Springer
- Author(s)
- Hideyuki Suzuki, Jun Tanida, Masanori Hashimoto
- Published
- 2023-10-17
- Edition
- 1
- Format
- eBook (pdf, epub, mobi)
- Pages
- 286
- Language
- English
- ISBN-10
- 9819950740
- ISBN-13
- 9789819950720
- License
- CC BY
- Book Homepage
- Free eBook, Errata, Code, Solutions, etc.
Introduction Revival of Optical Computing Nonlinear Dynamics and Computing in Recurrent Neural Networks Fluorescence Energy Transfer Computing Fluorescence Energy Transfer Computing Quantum-Dot-Based Photonic Reservoir Computing Exploring Integrated Device Implementation for FRET-Based Optical Reservoir Computing FRET Networks: Modeling and Analysis for Computing Quantum Walk on FRET Networks Spatial-Photonic Spin System Spatial Photonic Ising Machine with Time/Space Division Multiplexing Investigation on Oscillator-Based Ising Machines Sampling-Like Dynamics of the Nonlinear Dynamical System Combined with Optimization Photonic Reservoir Computing Reservoir Computing Based on Iterative Function Systems Bridging the Gap Between Reservoirs and Neural Networks Brain-Inspired Reservoir Computing Models