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Light-stimulable molecules/nanoparticles networks for switchable logical functions and reservoir computing

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arxiv 1808.02537 v1 pith:W4HCXQT7 submitted 2018-08-07 physics.app-ph cond-mat.mes-hallcs.ET

classification physics.app-phcond-mat.mes-hallcs.ET
keywords computinglogicalmolecularmoleculesnanoparticlesnetworksreservoircontrolled
verification ladder T0 review T1 audit T2 compute T3 formal
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We report the fabrication and electron transport properties of nanoparticles self-assembled networks (NPSAN) of molecular switches (azobenzene derivatives) interconnected by Au nanoparticles, and we demonstrate optically-driven switchable logical operations associated to the light controlled switching of the molecules. The switching yield is up to 74%. We also demonstrate that these NPSANs are prone for light-stimulable reservoir computing. The complex non-linearity of electron transport and dynamics in these highly connected and recurrent networks of molecular junctions exhibit rich high harmonics generation (HHG) required for reservoir computing (RC) approaches. Logical functions and HHG are controlled by the isomerization of the molecules upon light illumination. These results, without direct analogs in semiconductor devices, open new perspectives to molecular electronics in unconventional computing.

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