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I L'Heureux

Publications and source records attributed to I L'Heureux.

8 recordsLinked to original sources

Rate processes in a delayed, stochastically driven, and overdamped system

A Fokker-Planck formulation of systems described by stochastic delay differential equations has been recently proposed. A separation of time scales approximation allowing this Fokker-Planck equation to be simplified in the case of multistable systems is hereby introduced, and applied to a system consisting of a particle coupled to a delayed quartic potential. In that approximation, population numbers in each well obey a phenomenological rate law. The corresponding transition rate is expressed in terms of the noise variance and the steady-state probability density. The same type of expression is also obtained for the mean first passage time from a given point to another one. The steady-state probability density appearing in these formulas is determined both from simulations and from a small delay expansion. The results support the validity of the separation of time scales approximation. However, the results obtained using a numerically determined steady-state probability are more accurate than those obtained using the small delay expansion, thereby stressing the high sensitivity of the transition rate and mean first passage time to the shape of the steady-state probability density. Simulation results also indicate that the transition rate and the mean first passage time both follow Arrhenius' law when the noise variance is small, even if the delay is large. Finally, deterministic unbounded solutions are found to coexist with the bounded ones. In the presence of noise, the transition rate from bounded to unbounded solutions increases with the delay.

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Impact of environmental noise on oscillatory pattern formation in crystal growth: plagioclase feldspar

Recently, a model for oscillatory zoning in a geochemical system (plagioclase feldspar) was proposed. In that model, oscillations in the composition are generated through a Hopf bifurcation. In this paper, the effects of fluctuations of the bulk composition are studied by means of computer simulations. It is shown that environmental noise can lead to pattern formation such as oscillatory zoning, even when no deterministic periodic solutions exist. The fluctuations in the bulk composition thus lead to an enlargement of the range of system's variables values for which oscillatory zoning occurs. Coherence resonance close to the Hopf bifurcation is also observed in such a system.

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Origin of banded patterns in natural sphalerite

Mississippi Valley type (MVT) sphalerite is a zinc ore mineral (zinc sulfide) found in many sedimentary basins around the world. Its texture is described as a polycrystalline aggregate which results from the precipitation of metal-rich brines in a carbonate host rock. Typically, it exhibits a spatial pattern characterized by an alternation of colored bands with a length scale on the order of 0.1 mm. In our samples, the color of the bands correlates with the local iron composition. In order to understand the origin of banded patterns in MVT sphalerite, we propose here an extension of the competitive growth mechanism often used to model periodic precipitation patterns. In our model, precipitation from interacting brines, growth and dissolution of crystallite radius, and ripening are taken into account. As in all postnucleation models, the nucleation process is neglected. It is shown that our model may indeed generate patterns that are qualitatively compatible with the observed ones. This constitutes an example of self-organization in a geochemical system.

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