Phase clusters in large populations of chemical oscillators
Phase clusters in large populations of chemical oscillators
Complex synchronization: Chemical oscillators communicating by exchange of intermediate species through the surrounding solution form clusters of individuals with synchronized oscillations that are out of phase with other clusters. The system evolves from unsynchronized oscillations at low number density n to four, three, two, and finally one cluster with increasing n.
10343-10346
taylor, Annette
08028a29-428d-4732-b6b1-f7a93389b386
Tinsley, Mark R.
063eac1c-1673-461e-8a36-654bc0b89c6c
Wang, Fang
d46a17fd-0521-46b3-88f1-17e14b255ae8
Showalter, Kenneth
5b2ca369-35e2-413c-ac63-608168c9875c
17 October 2011
taylor, Annette
08028a29-428d-4732-b6b1-f7a93389b386
Tinsley, Mark R.
063eac1c-1673-461e-8a36-654bc0b89c6c
Wang, Fang
d46a17fd-0521-46b3-88f1-17e14b255ae8
Showalter, Kenneth
5b2ca369-35e2-413c-ac63-608168c9875c
taylor, Annette, Tinsley, Mark R., Wang, Fang and Showalter, Kenneth
(2011)
Phase clusters in large populations of chemical oscillators.
Angewandte Chemie, 50 (43), .
(doi:10.1002/anie.201008248).
Abstract
Complex synchronization: Chemical oscillators communicating by exchange of intermediate species through the surrounding solution form clusters of individuals with synchronized oscillations that are out of phase with other clusters. The system evolves from unsynchronized oscillations at low number density n to four, three, two, and finally one cluster with increasing n.
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e-pub ahead of print date: 3 May 2011
Published date: 17 October 2011
Identifiers
Local EPrints ID: 499409
URI: http://eprints.soton.ac.uk/id/eprint/499409
ISSN: 0044-8249
PURE UUID: 55ecac9a-949b-4e9a-bb3f-1d8d88759367
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Date deposited: 19 Mar 2025 17:32
Last modified: 20 Mar 2025 03:12
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Contributors
Author:
Annette taylor
Author:
Mark R. Tinsley
Author:
Fang Wang
Author:
Kenneth Showalter
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