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Autores principales: Kurth, Jutta G., Bouchaud, Jean-Philippe
Formato: Preprint
Publicado: 2025
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Acceso en línea:https://arxiv.org/abs/2511.13277
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author Kurth, Jutta G.
Bouchaud, Jean-Philippe
author_facet Kurth, Jutta G.
Bouchaud, Jean-Philippe
contents We derive the stationary distribution in various regimes of the extended Chiarella model of financial markets. This model is a stochastic nonlinear dynamical system that encompasses dynamical competition between a (saturating) trending and a mean-reverting component. We find the so-called mispricing distribution and the trend distribution to be unimodal Gaussians in the small noise, small feedback limit. Slow trends yield Gaussian-cosh mispricing distributions that allow for a P-bifurcation: unimodality occurs when mean-reversion is fast, bimodality when it is slow. The critical point of this bifurcation is established and refutes previous ad-hoc reports and differs from the bifurcation condition of the dynamical system itself. For fast, weakly coupled trends, deploying the Furutsu-Novikov theorem reveals that the result is again unimodal Gaussian. For the same case with higher coupling we disprove another claim from the literature: bimodal trend distributions do not generally imply bimodal mispricing distributions. The latter becomes bimodal only for stronger trend feedback. The exact solution in this last regime remains unfortunately beyond our proficiency.
format Preprint
id arxiv_https___arxiv_org_abs_2511_13277
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stationary Distributions of the Mode-switching Chiarella Model
Kurth, Jutta G.
Bouchaud, Jean-Philippe
Trading and Market Microstructure
Data Analysis, Statistics and Probability
We derive the stationary distribution in various regimes of the extended Chiarella model of financial markets. This model is a stochastic nonlinear dynamical system that encompasses dynamical competition between a (saturating) trending and a mean-reverting component. We find the so-called mispricing distribution and the trend distribution to be unimodal Gaussians in the small noise, small feedback limit. Slow trends yield Gaussian-cosh mispricing distributions that allow for a P-bifurcation: unimodality occurs when mean-reversion is fast, bimodality when it is slow. The critical point of this bifurcation is established and refutes previous ad-hoc reports and differs from the bifurcation condition of the dynamical system itself. For fast, weakly coupled trends, deploying the Furutsu-Novikov theorem reveals that the result is again unimodal Gaussian. For the same case with higher coupling we disprove another claim from the literature: bimodal trend distributions do not generally imply bimodal mispricing distributions. The latter becomes bimodal only for stronger trend feedback. The exact solution in this last regime remains unfortunately beyond our proficiency.
title Stationary Distributions of the Mode-switching Chiarella Model
topic Trading and Market Microstructure
Data Analysis, Statistics and Probability
url https://arxiv.org/abs/2511.13277