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Singular SPDEs on Homogeneous Lie Groups

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arxiv 2301.05121 v3 pith:POE5GG4U submitted 2023-01-12 math.PR math.AP

classification math.PRmath.AP
keywords operatorpartialmathbbmathfrakclassdifferentialgrouphomogeneous
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abstract

The aim of this article is to extend the scope of the theory of regularity structures in order to deal with a large class of singular SPDEs of the form $$\partial_t u = \mathfrak{L} u+ F(u, \xi)\ ,$$ where the differential operator $\mathfrak{L}$ fails to be elliptic. This is achieved by interpreting the base space $\mathbb{R}^{d}$ as a non-trivial homogeneous Lie group $\mathbb{G}$ such that the differential operator $\partial_t -\mathfrak{L}$ becomes a translation invariant hypoelliptic operator on $\mathbb{G}$. Prime examples are the kinetic Fokker-Planck operator $\partial_t -\Delta_v - v\cdot \nabla_x$ and heat-type operators associated to sub-Laplacians. As an application of the developed framework, we solve a class of parabolic Anderson type equations $$\partial_t u = \sum_{i} X^2_i u + u (\xi-c)$$ on the compact quotient of an arbitrary Carnot group.

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  1. Moment estimates for the stochastic heat equation on Cartan-Hadamard manifolds

    math.PR 2024-11 reject novelty 6.0 of 10

    For the Parabolic Anderson model on Cartan-Hadamard manifolds, the paper establishes a curvature-dependent Dalang condition, exponential moment upper bounds with a spectral-gap term, and asymptotically matching lower bounds.

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