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Main Authors: capatina, Daniela, Gouasmi, Aimene
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2604.02137
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author capatina, Daniela
Gouasmi, Aimene
author_facet capatina, Daniela
Gouasmi, Aimene
contents This paper addresses the local recovery of conservative fluxes and the a posteriori error analysis for an elliptic interface problem with discontinuous coefficients. The transmission conditions on the interface are imposed by means of Nitsche's method and the discretization is carried out using conforming finite elements on unfitted meshes via the CutFEM method. A flux is subsequently defined in the global Raviart-Thomas space, ensuring that it satisfies the natural conservation property on the cut cells, and is then employed in the a posteriori error analysis. We prove here the sharp reliability of the error estimator and show a numerical experiment which illustrates the approach.
format Preprint
id arxiv_https___arxiv_org_abs_2604_02137
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Flux-equilibrated based a posteriori error analysis for an interface problem with CutFEM
capatina, Daniela
Gouasmi, Aimene
Numerical Analysis
This paper addresses the local recovery of conservative fluxes and the a posteriori error analysis for an elliptic interface problem with discontinuous coefficients. The transmission conditions on the interface are imposed by means of Nitsche's method and the discretization is carried out using conforming finite elements on unfitted meshes via the CutFEM method. A flux is subsequently defined in the global Raviart-Thomas space, ensuring that it satisfies the natural conservation property on the cut cells, and is then employed in the a posteriori error analysis. We prove here the sharp reliability of the error estimator and show a numerical experiment which illustrates the approach.
title Flux-equilibrated based a posteriori error analysis for an interface problem with CutFEM
topic Numerical Analysis
url https://arxiv.org/abs/2604.02137