Spike propagation in a nanolaser-based optoelectronic neuron

Author:

Ortega-Piwonka Ignacio1,Hejda Matěj2ORCID,Alanis Juan2ORCID,Lourenço João3,Hurtado Antonio2,Figueiredo José3ORCID,Romeira Bruno4ORCID,Javaloyes Julien1ORCID

Affiliation:

1. University of the Balearic Islands, Carretera de Valldemossa

2. University of Strathclyde

3. Universidade de Lisboa

4. Bio- and Nanophotonics, INL - International Iberian Nanotechnology Laboratory

Abstract

With the recent development of artificial intelligence and deep neural networks, alternatives to the Von Neumann architecture are in demand to run these algorithms efficiently in terms of speed, power and component size. In this theoretical study, a neuromorphic, optoelectronic nanopillar metal-cavity consisting of a resonant tunneling diode (RTD) and a nanolaser diode (LD) is demonstrated as an excitable pulse generator. With the proper configuration, the RTD behaves as an excitable system while the LD translates its electronic output into optical pulses, which can be interpreted as bits of information. The optical pulses are characterized in terms of their width, amplitude, response delay, distortion and jitter times. Finally, two RTD-LD units are integrated via a photodetector and their feasibility to generate and propagate optical pulses is demonstrated. Given its low energy consumption per pulse and high spiking rate, this device has potential applications as building blocks in neuromorphic processors and spiking neural networks.

Funder

H2020 Future and Emerging Technologies

UK Research and InnovationTuring AI Acceleration Fellowshops Programme

Publisher

Optica Publishing Group

Subject

Electronic, Optical and Magnetic Materials

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