Title :
Reaction-diffusion media with excitable oregonators coupled by memristors
Author :
Gong, Xiyuan ; Asai, Tetsuya ; Motomura, Masato
Author_Institution :
Grad. Sch. of Inf. Sci. & Technol., Hokkaido Univ., Sapporo, Japan
Abstract :
We numerically investigated the dynamics of a new reaction-diffusion-type excitable medium where the diffusion coefficient is represented by memristive dynamics. This type of a medium consists of an array of excitable Oregonators, and each Oregonator is locally coupled with other Oregonators via memristors, which were claimed to be the fourth circuit element exhibiting a relationship between flux φ and charge q. Through extensive numerical simulations, we found that the memristor conductances were modulated by the excitable waves and controlled the velocity of the waves, depending on the memristor´s polarity. Further, different nonuniform spatial patterns were generated depending on the initial condition of Oregonator´s state, memristor polarity and stimulation.
Keywords :
diffusion; memristors; numerical analysis; Oregonator state; diffusion coefficient; excitable Oregonator; memristive dynamics; memristor; memristor polarity; numerical simulation; reaction-diffusion media; reaction-diffusion-type excitable medium; spatial pattern; Couplings; Media; Memristors; Numerical models; Propagation; Simulation;
Conference_Titel :
Cellular Nanoscale Networks and Their Applications (CNNA), 2012 13th International Workshop on
Conference_Location :
Turin
Print_ISBN :
978-1-4673-0287-6
DOI :
10.1109/CNNA.2012.6331440