2022
DOI: 10.4064/sm210111-5-5
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Daugavet points and $\Delta $-points in Lipschitz-free spaces

Abstract: We study Daugavet points and ∆-points in Lipschitz-free Banach spaces. We prove that if M is a compact metric space, then µ ∈ S F (M ) is a Daugavet point if and only if there is no denting point of B F (M ) at distance strictly smaller than 2 from µ. Moreover, we prove that if x and y are connectable by rectifiable curves of length as close to d(x, y) as we wish, then the molecule mx,y is a ∆-point. Some conditions on M which guarantee that the previous implication reverses are also obtained. As a consequence… Show more

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Cited by 16 publications
(39 citation statements)
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“…x − θe t JT ≤ x − x t e t JT + (1 − α) ≤ 2 − α so that x is at distance strictly less than 2 from a (weak * ) denting point of JT . The conclusion follows from a weak * version of [30,Proposition 3.1]. Now we will show that JT does not admit ∆-points.…”
Section: Thusmentioning
confidence: 73%
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“…x − θe t JT ≤ x − x t e t JT + (1 − α) ≤ 2 − α so that x is at distance strictly less than 2 from a (weak * ) denting point of JT . The conclusion follows from a weak * version of [30,Proposition 3.1]. Now we will show that JT does not admit ∆-points.…”
Section: Thusmentioning
confidence: 73%
“…Can molecules in JT * be ∆-points? Note that the observation from [30,Remark 2.4] applied to the set of molecules in JT * which satisfies as mentioned conv M = B X * gives the following simplification. Although it is possible to do some computations in very specific cases (for example when x * is a molecule supported on two segments) it seems to be difficult to estimate the distance between two molecules in general even when they are supported on the same branch of T .…”
Section: S(m Xf δ)mentioning
confidence: 99%
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“…Therefore, the concept of Daugavet points can be faced as a local version of the Daugavet property. See [1,2,7,9] for background on Daugavet points and diverse relevant examples.…”
Section: Introductionmentioning
confidence: 99%