English

Forest Fire Model as a Supercritical Dynamic Model in Financial Systems

General Finance 2015-03-18 v1 Physics and Society

Abstract

Recently, large-scale cascading failures in complex systems have garnered substantial attention. Such extreme events have been treated as an integral part of the self-organized criticality (SOC). Recent empirical work has suggested that some extreme events systematically deviate from the SOC paradigm, requiring a different theoretical framework. We shed additional theoretical light on this possibility by studying financial crisis. We build our model of financial crisis on the well-known forest fire model in scale-free networks. Our analysis shows a non-trivial scaling feature indicating supercritical behavior, which is independent of system size. Extreme events in the supercritical state result from bursting of a fat bubble, seeds of which are sown by a protracted period of a benign financial environment with few shocks. Our findings suggest that policymakers can control the magnitude of financial meltdowns by keeping the economy operating within reasonable duration of a benign environment.

Keywords

Cite

@article{arxiv.1503.04841,
  title  = {Forest Fire Model as a Supercritical Dynamic Model in Financial Systems},
  author = {Deokjae Lee and Jae-Young Kim and Jeho Lee and B. Kahng},
  journal= {arXiv preprint arXiv:1503.04841},
  year   = {2015}
}
R2 v1 2026-06-22T08:54:37.276Z