Double resonance induced by group coupling with quenched disorder

Author:

Liu Cong12ORCID,Wu Zhi-Xi12ORCID,Wang Chong-Yang23ORCID,Yang Han-Xin4ORCID,Guan Jian-Yue12

Affiliation:

1. Lanzhou Center for Theoretical Physics and Key Laboratory of Theoretical Physics of Gansu Province, Lanzhou University 1 , Lanzhou, Gansu 730000, China

2. Institute of Computational Physics and Complex Systems, Lanzhou University 2 , Lanzhou, Gansu 730000, China

3. Yangtze Delta Region Institute of University of Electronic Science and Technology of China 3 , Huzhou, Zhejiang 313000, China

4. Department of Physics, Fuzhou University 4 , Fuzhou 350108, People’s Republic of China

Abstract

Results show that the astrocytes can not only listen to the talk of large assemble of neurons but also give advice to the conversations and are significant sources of heterogeneous couplings as well. In the present work, we focus on such regulation character of astrocytes and explore the role of heterogeneous couplings among interacted neuron–astrocyte components in a signal response. We consider reduced dynamics in which the listening and advising processes of astrocytes are mapped into the form of group coupling, where the couplings are normally distributed. In both globally coupled overdamped bistable oscillators and an excitable FitzHugh–Nagumo (FHN) neuron model, we numerically and analytically demonstrate that two types of bell-shaped collective response curves can be obtained as the ensemble coupling strength or the heterogeneity of group coupling rise, respectively, which can be seen as a new type of double resonance. Furthermore, through the bifurcation analysis, we verify that these resonant signal responses stem from the competition between dispersion and aggregation induced by heterogeneous group and positive pairwise couplings, respectively. Our results contribute to a better understanding of the signal propagation in coupled systems with quenched disorder.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

Applied Mathematics,General Physics and Astronomy,Mathematical Physics,Statistical and Nonlinear Physics

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