It is discussed that the electromagnetic potential can cause the emergence of the coherent structures that in view of their coherence, openness and non-linearity, are able to self-organize and form various hierarchical levels of ecosystems. In the meantime the electromagnetic potential is also the physical agent acting as a messenger in these coherent structures. So it plays the task of reducing the number of independent microstates of a coherent system, becoming a candidate for implementing the concept of negentropy. Electromagnetic potential is shown to be essential for the self-organization and the time evolution of ecosystems, providing the mechanism for their non-locality, complexity and self-consistency (self-maintaining). © 2009 Elsevier B.V. All rights reserved.
Brizhik, L., DEL GIUDICE, E., Jorgensen, S.E., Marchettini, N., Tiezzi, E. (2009). The role of electromagnetic potentials in the evolutionary dynamics of ecosystems. ECOLOGICAL MODELLING, 220(16), 1865-1869 [10.1016/j.ecolmodel.2009.04.017].
The role of electromagnetic potentials in the evolutionary dynamics of ecosystems
MARCHETTINI, N.;TIEZZI, E.
2009-01-01
Abstract
It is discussed that the electromagnetic potential can cause the emergence of the coherent structures that in view of their coherence, openness and non-linearity, are able to self-organize and form various hierarchical levels of ecosystems. In the meantime the electromagnetic potential is also the physical agent acting as a messenger in these coherent structures. So it plays the task of reducing the number of independent microstates of a coherent system, becoming a candidate for implementing the concept of negentropy. Electromagnetic potential is shown to be essential for the self-organization and the time evolution of ecosystems, providing the mechanism for their non-locality, complexity and self-consistency (self-maintaining). © 2009 Elsevier B.V. All rights reserved.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/27739
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