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arxiv: 1903.06692 · v1 · pith:POCWG2WTnew · submitted 2019-03-15 · 🧮 math.AP · math.FA

On the L^p-theory for second-order elliptic operators in divergence form with complex coefficients

classification 🧮 math.AP math.FA
keywords coefficientsmathrmcomplexdivergenceellipticformrealsecond-order
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Given a complex, elliptic coefficient function we investigate for which values of $p$ the corresponding second-order divergence form operator, complemented with Dirichlet, Neumann or mixed boundary conditions, generates a strongly continuous semigroup on $\mathrm{L}^p(\Omega)$. Additional properties like analyticity of the semigroup, $\mathrm{H}^\infty$-calculus and maximal regularity are also discussed. Finally we prove a perturbation result for real coefficients that gives the whole range of $p$'s for small imaginary parts of the coefficients. Our results are based on the recent notion of $p$-ellipticity, reverse H\"older inequalities and Gaussian estimates for the real coefficients.

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