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A quasilinear transmission problem with application to Maxwell equations with a divergence-free D-field

Academic Article
Publication Date:
2022
abstract:
Maxwell equations in the absence of free charges require initial data with a divergence-free displacement field D. In materials in which the dependence D=D(E) is nonlinear the quasilinear problem ∇⋅D(E)=0 is hence to be solved. In many applications, e.g. in the modelling of wave packets, an approximative asymptotic ansatz of the electric field E is used, which satisfies this divergence condition at t=0 only up to a small residual. We search then for a small correction of the ansatz to enforce ∇⋅D(E)=0 at t=0 and choose this correction in the form of a gradient field. In the usual case of a power type nonlinearity in D(E) this leads to the sum of the Laplace and p-Laplace operators. We also allow for the medium to consist of two different materials so that a transmission problem across an interface is produced. We prove the existence of the correction term for a general class of nonlinearities and provide regularity estimates for its derivatives, independent of the L2-norm of the original ansatz. In this way, when applied to the wave packet setting, the correction term is indeed asymptotically smaller than the original ansatz. We also provide numerical experiments to support our analysis.
Iris type:
Articolo su Rivista
Keywords:
A-priori estimates; Asymptotic analysis; Maxwell equations; Quasilinear elliptic problem; Regularity; Transmission problem
List of contributors:
Dohnal, T.; Romani, G.; Tietz, D. P.
Handle:
https://irinsubria.uninsubria.it/handle/11383/2133344
Full Text:
https://irinsubria.uninsubria.it//retrieve/handle/11383/2133344/176881/2022%20Dohnal%20T.,%20Romani%20G.,%20Tietz%20D.P.%20-%20A%20quasilinear%20transmission%20problem%20with%20application%20to%20Maxwell%20equations%20with%20divergence-free%20D-field.pdf
Published in:
JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS
Journal
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