Abstract
We explore the processing of weak electrical signals in parallel arrays of bio-inspired threshold nanostructures showing a high variability in their threshold potentials. We consider a two-state canonical model that incorporates the basic properties demonstrated experimentally. The model is inspired by the voltage-gated ion channels in biological membranes and shows that the nanostructure variability can allow significant transmission of sub-threshold signals. Implications for the design of practical devices are briefly discussed.
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