Delay controlled partial synchronization in complex networks

Author(s)

    • Sawicki, Jakub

Bibliographic Information

Delay controlled partial synchronization in complex networks

Jakub Sawicki

(Springer theses : recognizing outstanding Ph. D. research)

Springer, c2019

  • : hardback

Available at  / 1 libraries

Search this Book/Journal

Note

"Doctoral thesis accepted by Technische Universität Berlin, Germany"

Includes bibliographical references

Description and Table of Contents

Description

The focus of this thesis are synchronization phenomena in networks and their intrinsic control through time delay, which is ubiquitous in real-world systems ranging from physics and acoustics to neuroscience and engineering. We encounter synchronization everywhere and it can be either a helpful or a detrimental mechanism. In the first part, after a survey of complex nonlinear systems and networks, we show that a seemingly simple system of two organ pipes gives birth to complex bifurcation and synchronization scenarios. Going from a 2-oscillator system to a ring of oscillators, we encounter the intriguing phenomenon of chimera states which are partial synchrony patterns with coexisting domains of synchronized and desynchronized dynamics. For more than a decade scientist have tried to solve the puzzle of this spontaneous symmetry-breaking emerging in networks of identical elements. We provide an analysis of initial conditions and extend our model by the addition of time delay and fractal connectivities. In the second part, we investigate partial synchronization patterns in a neuronal network and explain dynamical asymmetry arising from the hemispheric structure of the human brain. A particular focus is on the novel scenario of partial relay synchronization in multiplex networks. Such networks allow for synchronization of the coherent domains of chimera states via a remote layer, whereas the incoherent domains remain desynchronized. The theoretical framework is demonstrated with different generic models.

Table of Contents

Introduction.- Complex Systems.- Part 1: Single-Layer Systems.- Two Coupled Oscillators.- Chimeras in Net Works Without Delay.- Interplay Of Delay and Fractal Topology.- Part 2: Multilayer Systems.- Partial Synchronization in 2-Community Networks.- Multiplex Networks.- Conclusion.

by "Nielsen BookData"

Related Books: 1-1 of 1

Details

  • NCID
    BD03789449
  • ISBN
    • 9783030340759
  • Country Code
    sz
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    [Cham]
  • Pages/Volumes
    xv, 166 p.
  • Size
    25 cm
  • Subject Headings
  • Parent Bibliography ID
Page Top