English

Reinforcement Learning in a large scale photonic Recurrent Neural Network

Neural and Evolutionary Computing 2019-05-13 v2 Optics

Abstract

Photonic Neural Network implementations have been gaining considerable attention as a potentially disruptive future technology. Demonstrating learning in large scale neural networks is essential to establish photonic machine learning substrates as viable information processing systems. Realizing photonic Neural Networks with numerous nonlinear nodes in a fully parallel and efficient learning hardware was lacking so far. We demonstrate a network of up to 2500 diffractively coupled photonic nodes, forming a large scale Recurrent Neural Network. Using a Digital Micro Mirror Device, we realize reinforcement learning. Our scheme is fully parallel, and the passive weights maximize energy efficiency and bandwidth. The computational output efficiently converges and we achieve very good performance.

Keywords

Cite

@article{arxiv.1711.05133,
  title  = {Reinforcement Learning in a large scale photonic Recurrent Neural Network},
  author = {Julian Bueno and Sheler Maktoobi and Luc Froehly and Ingo Fischer and Maxime Jacquot and Laurent Larger and Daniel Brunner},
  journal= {arXiv preprint arXiv:1711.05133},
  year   = {2019}
}