6533b7dbfe1ef96bd126f866
RESEARCH PRODUCT
Intrinsic Lipschitz Graphs and Vertical β-Numbers in the Heisenberg Group
Tuomas OrponenVasileios ChousionisKatrin Fässlersubject
osittaisdifferentiaaliyhtälöt28A75 (Primary) 28C10 35R03 (Secondary)SETSGeneral Mathematics010102 general mathematics16. Peace & justiceLipschitz continuity01 natural sciencesTravelling salesman problemCombinatoricsMathematics - Metric GeometryMathematics - Classical Analysis and ODEsTRAVELING SALESMAN PROBLEM0103 physical sciences111 MathematicsHeisenberg groupMathematics::Metric Geometrymittateoria010307 mathematical physicsRECTIFIABILITY0101 mathematicsMathematicsdescription
The purpose of this paper is to introduce and study some basic concepts of quantitative rectifiability in the first Heisenberg group $\mathbb{H}$. In particular, we aim to demonstrate that new phenomena arise compared to the Euclidean theory, founded by G. David and S. Semmes in the 90's. The theory in $\mathbb{H}$ has an apparent connection to certain nonlinear PDEs, which do not play a role with similar questions in $\mathbb{R}^{3}$. Our main object of study are the intrinsic Lipschitz graphs in $\mathbb{H}$, introduced by B. Franchi, R. Serapioni and F. Serra Cassano in 2006. We claim that these $3$-dimensional sets in $\mathbb{H}$, if any, deserve to be called quantitatively $3$-rectifiable. Our main result is that the intrinsic Lipschitz graphs satisfy a weak geometric lemma with respect to vertical $\beta$-numbers. Conversely, extending a result of David and Semmes from $\mathbb{R}^{n}$, we prove that a $3$-Ahlfors-David regular subset in $\mathbb{H}$, which satisfies the weak geometric lemma and has big vertical projections, necessarily has big pieces of intrinsic Lipschitz graphs.
year | journal | country | edition | language |
---|---|---|---|---|
2016-06-24 | American Journal of Mathematics |