Chimera State in the Network of Fractional-Order FitzHugh–Nagumo Neurons

Author:

Ramadoss Janarthanan1,Aghababaei Sajedeh2ORCID,Parastesh Fatemeh2ORCID,Rajagopal Karthikeyan3ORCID,Jafari Sajad24ORCID,Hussain Iqtadar5ORCID

Affiliation:

1. Centre for Artificial Intelligence, Chennai Institute of Technology, Malayambakkam, India

2. Department of Biomedical Engineering, Amirkabir University of Technology, No. 350, Hafez Ave, Valiasr Square, Tehran 159163-4311, Iran

3. Centre for Nonlinear Systems, Chennai Institute of Technology, Malayambakkam, India

4. Health Technology Research Institute, Amirkabir University of Technology, No. 350, Hafez Ave, Valiasr Square, Tehran 159163-4311, Iran

5. Department of Mathematics, Statistics and Physics, Qatar University, Doha 2713, Qatar

Abstract

The fractional calculus in the neuronal models provides the memory properties. In the fractional-order neuronal model, the dynamics of the neuron depends on the derivative order, which can produce various types of memory-dependent dynamics. In this paper, the behaviors of the coupled fractional-order FitzHugh–Nagumo neurons are investigated. The effects of the coupling strength and the derivative order are under consideration. It is revealed that the level of the synchronization is decreased by decreasing the derivative order, and the chimera state emerges for stronger couplings. Furthermore, the patterns of the formed chimeras rely on the order of the derivatives.

Funder

Chennai Institute of Technology

Publisher

Hindawi Limited

Subject

Multidisciplinary,General Computer Science

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