English

Collective and synchronous dynamics of photonic spiking neurons

Optics 2021-04-28 v1 Emerging Technologies Adaptation and Self-Organizing Systems

Abstract

Nonlinear dynamics of spiking neural networks has recently attracted much interest as an approach to understand possible information processing in the brain and apply it to artificial intelligence. Since information can be processed by collective spiking dynamics of neurons, the fine control of spiking dynamics is desirable for neuromorphic devices. Here we show that photonic spiking neurons implemented with paired nonlinear optical oscillators can be controlled to generate two modes of bio-realistic spiking dynamics by changing the optical pump amplitude. When they are coupled in a network, we found that the interaction between the photonic neurons induces an effective change in the pump amplitude depending on the order parameter that characterizes synchronization. The experimental results show that the effective change causes spontaneous modification of the spiking modes and firing rates of clustered neurons, and such collective dynamics can be utilized to realize efficient heuristics for solving NP-hard combinatorial optimization problems.

Keywords

Cite

@article{arxiv.2009.11454,
  title  = {Collective and synchronous dynamics of photonic spiking neurons},
  author = {Takahiro Inagaki and Kensuke Inaba and Timothée Leleu and Toshimori Honjo and Takuya Ikuta and Koji Enbutsu and Takeshi Umeki and Ryoichi Kasahara and Kazuyuki Aihara and Hiroki Takesue},
  journal= {arXiv preprint arXiv:2009.11454},
  year   = {2021}
}

Comments

43 pages, 9 figures