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Derivation of non-polynomial fractional diffusions from the generalized exclusion with a slow barrier

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abstract

In this article we derive in the hydrodynamic limit a generalized fractional porous medium equation, in the sense that the regional fractional Laplacian is applied to a function of the density given in terms of a power series, instead of a polynomial. The hydrodynamic limit is obtained considering a microscopic dynamics of random particles with long range interactions, but the jump rate highly depends on the occupancy near the sites where the interactions take place. This system is also studied in the presence of a "slow barrier" that hinders the flow of mass between two half-spaces.

fields

math.PR 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

A gradient model for the Bernstein polynomial basis

math.PR · 2024-11-24 · conditional · novelty 7.0

A symmetric exclusion process realizing Bernstein-polynomial diffusivities is constructed and claimed to satisfy the gradient condition, generalizing the Porous Media Model.

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  • A gradient model for the Bernstein polynomial basis math.PR · 2024-11-24 · conditional · none · ref 4 · internal anchor

    A symmetric exclusion process realizing Bernstein-polynomial diffusivities is constructed and claimed to satisfy the gradient condition, generalizing the Porous Media Model.