Anomalous behaviour of mutual information in finite flocks

The existing consensus is that flocks are poised at criticality, entailing long correlation lengths and a maximal value of Shannon mutual information in the large-system limit. We show, by contrast, that for finite flocks which do not truly break ergodicity in the long-observation-time limit, mutual...

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Veröffentlicht in:Europhysics letters 2017-11, Vol.120 (3), p.38005
Hauptverfasser: Barnett, L., Brown, J., Bossomaier, T.
Format: Artikel
Sprache:eng
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Zusammenfassung:The existing consensus is that flocks are poised at criticality, entailing long correlation lengths and a maximal value of Shannon mutual information in the large-system limit. We show, by contrast, that for finite flocks which do not truly break ergodicity in the long-observation-time limit, mutual information may not only fail to peak at criticality -as observed for other critical systems- but also diverge as noise tends to zero. This result carries implications for other finite-size, out-of-equilibrium systems, where observation times may vary widely compared to time scales of internal system dynamics; thus it may not be assumed that mutual information locates the phase transition.
ISSN:0295-5075
1286-4854
DOI:10.1209/0295-5075/120/38005