On-chip phonon-magnon reservoir for neuromorphic computing

Author:

Yaremkevich Dmytro D.,Scherbakov Alexey V.ORCID,De Clerk LukeORCID,Kukhtaruk Serhii M.ORCID,Nadzeyka AchimORCID,Campion Richard,Rushforth Andrew W.ORCID,Savel’ev SergeyORCID,Balanov Alexander G.ORCID,Bayer ManfredORCID

Abstract

AbstractReservoir computing is a concept involving mapping signals onto a high-dimensional phase space of a dynamical system called “reservoir” for subsequent recognition by an artificial neural network. We implement this concept in a nanodevice consisting of a sandwich of a semiconductor phonon waveguide and a patterned ferromagnetic layer. A pulsed write-laser encodes input signals into propagating phonon wavepackets, interacting with ferromagnetic magnons. The second laser reads the output signal reflecting a phase-sensitive mix of phonon and magnon modes, whose content is highly sensitive to the write- and read-laser positions. The reservoir efficiently separates the visual shapes drawn by the write-laser beam on the nanodevice surface in an area with a size comparable to a single pixel of a modern digital camera. Our finding suggests the phonon-magnon interaction as a promising hardware basis for realizing on-chip reservoir computing in future neuromorphic architectures.

Funder

Deutsche Forschungsgemeinschaft

Volkswagen Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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