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Related papers: Planar $W^{1,\,1}$-extension domains

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We characterize bounded simply-connected planar $W^{1,p}$-extension domains for $1 < p <2$ as those bounded domains $\Omega \subset \mathbb R^2$ for which any two points $z_1,z_2 \in \mathbb R^2 \setminus \Omega$ can be connected with a…

Classical Analysis and ODEs · Mathematics 2024-10-10 Pekka Koskela , Tapio Rajala , Yi Ru-Ya Zhang

We show that a bounded domain in a Euclidean space is a $W^{1,1}$-extension domain if and only if it is a strong $BV$-extension domain. In the planar case, bounded and strong $BV$-extension domains are shown to be exactly those…

Metric Geometry · Mathematics 2021-10-07 Miguel García-Bravo , Tapio Rajala

We prove that for a bounded simply connected domain $\Omega\subset \mathbb R^2$, the Sobolev space $W^{1,\,\infty}(\Omega)$ is dense in $W^{1,\,p}(\Omega)$ for any $1\le p<\infty$. Moreover, we show that if $\Omega$ is Jordan, then…

Classical Analysis and ODEs · Mathematics 2016-03-15 Pekka Koskela , Yi Ru-Ya Zhang

We give a necessary condition for a domain to have a bounded extension operator from $L^{1,p}(\Omega)$ to $L^{1,p}(\mathbb R^n)$ for the range $1 < p < 2$. The condition is given in terms of a power of the distance to the boundary of…

Analysis of PDEs · Mathematics 2022-07-04 Miguel García-Bravo , Tapio Rajala , Jyrki Takanen

We prove that a bi-Lipschitz image of a planar $BV$-extension domain is also a $BV$-extension domain, and that a bi-Lipschitz image of a planar $W^{1,1}$-extension domain is again a $W^{1,1}$-extension domain.

Functional Analysis · Mathematics 2021-06-15 Miguel García-Bravo , Tapio Rajala , Zheng Zhu

In this paper, we study the relationship between Sobolev extension domains and homogeneous Sobolev extension domains. Precisely, we obtain the following results. 1- Let $1\leq q\leq p\leq \infty$. Then a bounded $(L^{1, p}, L^{1,…

Functional Analysis · Mathematics 2024-11-19 Pekka Koskela , Riddhi Mishra , Zheng Zhu

Let $\Omega \subset \mathbb{R}^n$ be a bounded domain and $1 < p < \infty$. We characterize $(1,p)$-extension domains in terms of inequalities of Bourgain--Brezis--Mironescu type. More precisely, we show that $\Omega$ is a $(1,p)$-extension…

Functional Analysis · Mathematics 2026-04-28 Riddhi Mishra , Kaushik Mohanta

We show that Sobolev space $W^1_1(\Omega)$ of any planar one-connected domain $\Omega$ has the Bounded Approximation property. The result holds independently from the properties of the boundary of $\Omega$. The prove is based on a new…

Functional Analysis · Mathematics 2014-01-29 Maria Roginskaya , Michal Wojciechowski

We show that there exists a planar Jordan domains $\Omega$ with boundary of Hausdorff dimension $1$ such that, for any conformal maps $\varphi \colon \mathbb D \to \Omega$, any homeomorphic extension of $\varphi$ or $\varphi^{-1}$ to the…

Complex Variables · Mathematics 2018-12-17 Yi Ru-Ya Zhang

We consider conformal homeomorphisms $\varphi$ of generalized Jordan domains $U$ onto planar domains $\Omega$ %, possibly {\bf infinitely connected}, that satisfy both of the next two conditions: (1) at most countably many boundary…

Complex Variables · Mathematics 2023-02-09 Jun Luo , Xiao-Ting Yao

We prove that for a bounded domain $\Omega\subset \mathbb R^n$ which is Gromov hyperbolic with respect to the quasihyperbolic metric, especially when $\Omega$ is a finitely connected planar domain, the Sobolev space $W^{1,\,\infty}(\Omega)$…

Functional Analysis · Mathematics 2016-05-27 Pekka Koskela , Tapio Rajala , Yi Ru-Ya Zhang

Let $\mathbb X$ and $\mathbb Y$ be $\ell$-connected Jordan domains, $\ell \in \mathbb N$, with rectifiable boundaries in the complex plane. We prove that any boundary homeomorphism $\varphi \colon \partial \mathbb X \to \partial \mathbb Y$…

Complex Variables · Mathematics 2018-12-06 Aleksis Koski , Jani Onninen

We prove an asymptotically sharp dimension upper-bound for the boundary of bounded simply-connected planar Sobolev $W^{1,p}$-extension domains via the weak mean porosity of the boundary. The sharpness of our estimate is shown by examples.

Classical Analysis and ODEs · Mathematics 2020-06-26 Danka Lučić , Tapio Rajala , Jyrki Takanen

Bourgain et al.(2001) proved that for $p>1$ and smooth bounded domain $\Omega\subseteq\mathbb{R}^N$, \begin{equation*} \lim\limits_{s\to1}(1-s)\iint \limits_{\Omega \times \Omega}\frac{\lvert f(x)-f(y) \rvert^p}{\lvert x-y \rvert^{N+sp}}dx…

Analysis of PDEs · Mathematics 2021-09-28 Kaushik Bal , Kaushik Mohanta , Prosenjit Roy

We reveal relations between the duality of capacities and the duality between Sobolev extendability of Jordan domains in the plane, and explain how to read the curve conditions involvd in the Sobolev extendability of Jordan domains via the…

Complex Variables · Mathematics 2020-02-05 Yi Ru-Ya Zhang

We prove that if $\Omega$ is a simply connected quadrature domain for a distribution with compact support and the infinity point belongs the boundary, then the boundary has an asymptotic curve that is either a straight line or a parabola or…

Complex Variables · Mathematics 2014-11-03 Lavi Karp

Let $\Omega \subset \rr^2$ be a bounded simply connected domain. We show that, for a fixed (every) $p\in (1,\fz),$ the divergence equation $\mathrm{div}\,\mathbf{v}=f$ is solvable in $W^{1,p}_0(\Omega)^2$ for every $f\in L^p_0(\Omega)$, if…

Classical Analysis and ODEs · Mathematics 2013-07-05 Renjin Jiang , Aapo Kauranen , Pekka Koskela

For a bounded simply connected domain $\Omega\subset\mathbb{R}^2$, any point $z\in\Omega$ and any $0<\alpha<1$, we give a lower bound for the $\alpha$-dimensional Hausdorff content of the set of points in the boundary of $\Omega$ which can…

Classical Analysis and ODEs · Mathematics 2018-03-23 Pekka Koskela , Debanjan Nandi , Artur Nicolau

We show that if an open arc J of the boundary of a Jordan domain $\Omega$ is rectifiable, then the derivative $\Phi$' of the Riemann map $\Phi: D\rightarrow \Omega$ from the open unit disk D onto $\Omega$ behaves as an $H^1$ function when…

Complex Variables · Mathematics 2018-08-01 V. Liontou , V. Nestoridis

We show that a Lipschitz domain can be expanded solely near a part of its boundary, assuming that the part is enclosed by a piecewise C1 curve. The expanded domain as well as the extended part are both Lipschitz. We apply this result to…

Analysis of PDEs · Mathematics 2012-01-04 Jay Gopalakrishnan , Weifeng Qiu
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