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48 results for PL branched cover

Open and discrete maps with specific branch set images are equivalent to PL branched covers.

problem Understanding the equivalence of open and discrete maps and PL branched covers.
method Demonstrated that an open and discrete map f ⁣:SnoSnf \colon \mathbb{S}^n o \mathbb{S}^n with a specific branch set image is equivalent to a PL branched cover up to homeomorphism.
result Open and discrete maps with a specific branch set image are equivalent to PL branched covers.

We provide new branched covering representations for bounded and/or non-compact 4-manifolds, which extend the known ones for closed 4-manifolds. Assuming MM to be a connected oriented PL 4-manifold, our main results are the following: (1) if MM is compact with (possibly empty) boundary, there exists a simple branched…

2016-02-24abs ↗pdf ↗

Branched covers are applied frequently in topology - most prominently in the construction of closed oriented PL d-manifolds. In particular, strong bounds for the number of sheets and the topology of the branching set are known for dimension d<=4. On the other hand, Izmestiev and Joswig described how to obtain a simplic…

2007-07-10abs ↗pdf ↗

Given a closed oriented PL four-manifold XX and a closed surface BB embedded in XX with isolated cone singularities, we give a formula for the signature of an irregular dihedral cover of XX branched along BB. For XX simply-connected, we deduce a necessary condition on the intersection form of a simply-connected i…

2016-08-11abs ↗pdf ↗

Every closed oriented PL 4-manifold is a branched cover of the 4-sphere branched over a PL-surface with finitely many singularities by Piergallini [Topology 34(3):497-508, 1995]. This generalizes a long standing result by Hilden and Montesinos to dimension four. Izmestiev and Joswig [Adv. Geom. 3(2):191-225, 2003] gave…

2007-07-10abs ↗pdf ↗

In this paper we consider completed coverings that are branched coverings in the sense of Fox. For completed coverings between PL manifolds we give a characterization of the existence of a monodromy representation and the existence of a locally compact monodromy representation. These results stem from a characterizatio…

2014-06-25abs ↗pdf ↗

Non-orientable 4-manifolds are simple branched coverings of RP^4 and twisted S^3-bundles.

problem Characterizing non-orientable 4-manifolds as branched coverings.
method Showing that every closed connected non-orientable PL 4-manifold is a simple branched covering of $\RP^4$ and a twisted S3S^3-bundle.
result Non-orientable 4-manifolds are simple branched coverings of $\RP^4$ and twisted S3S^3-bundles, with specific conditions on the degree and branch set.

We construct an orientable ribbon surface F in B^4, which is universal in the following sense: any compact orientable pl 4-manifold having a handle decomposition with 0-, 1- and 2-handles can be represented as a cover of B^4 branched over F.

2003-08-24abs ↗pdf ↗

For surface-knots, branched covers with degree 3 have simplifying numbers <3.

problem Understanding numerical invariants of branched covering surface-knots.
method Analyzing numerical invariant (simplifying number) of branched covering surface-knots with degree 3.
result Branched covering surface-knots with degree 3 have simplifying numbers less than 3.

We introduce and analyze the characteristic foliation induced by a contact structure on a branched surface, in particular a branched standard spine of a 3-manifold. We extend to (fairly general) singular foliations of branched surfaces the local existence and uniqueness results which hold for genuine surfaces. Moreover…

1998-09-29abs ↗pdf ↗

New examples show transverse knots are determined by their branched covers.

problem Transverse knots and their isotopy classes.
method Constructing and analyzing non-isotopic transverse knots with contactomorphic cyclic branched covers.
result Transverse isotopy classes of many transverse knots are determined by the contactomorphism type of their cyclic branched covers.

Given a branched covering of degree d between closed surfaces, it determines a collection of partitions of d, the branch data. In this work we show that any branch data are realized by an indecomposable primitive branched covering on a connected close surface N with Euler's characteristic less than or equal to 0. This …

2007-07-19abs ↗pdf ↗

Proper branched coverings are homeomorphisms on 3D balls or when branch set is empty.

problem Global injectivity of proper branched coverings on Euclidean balls.
method Analyzing the global injectivity of proper branched coverings defined on the Euclidean nn-ball.
result Proper branched coverings are homeomorphisms on 3D balls or when branch set is empty.

Techniques for constructing codimension 2 embeddings and immersions of the 2 and 3-fold branched covers of the 3 and 4-dimensional spheres are presented. These covers are in braided form, and it is in this sense that they are folded. More precisely the composition of the embedding (or immersion) and the canonical proje…

2013-01-17abs ↗pdf ↗

We analyze the topology and geometry of a polyhedron of dimension 2 according to the minimum size of a cover by PL collapsible polyhedra. We provide partial characterizations of the polyhedra of dimension 2 that can be decomposed as the union of two PL collapsible subpolyhedra in terms of their simple homotopy type and…

2018-02-05abs ↗pdf ↗

The regular genus of certain 4-manifolds is determined, providing new insights.

problem Determining the regular genus of higher-dimensional closed PL manifolds.
method Using crystallization graphs and combinatorial topology, the regular genus is calculated for specific manifolds.
result The regular genus of S2imesS1imesS1\mathbb{S}^2 imes \mathbb{S}^1 imes \mathbb{S}^1 is 6, and S1imesS1imesS1imesS1\mathbb{S}^1 imes \mathbb{S}^1 imes \mathbb{S}^1 imes \mathbb{S}^1 is 16.

Random branched covers of groups are homotopy equivalent to geometrically small cancellation complexes.

problem Understanding the topological properties of random branched covers of groups.
method Constructing a random model for branched covers and showing asymptotic homotopy equivalence to geometrically small cancellation complexes.
result The fundamental group of a random branched cover is Gromov hyperbolic and has small cohomological dimension.

Branched covers between Riemann surfaces are associated with certain combinatorial data, and Hurwitz existence problem asks whether given data satisfying those combinatorial constraints can be realized by some branched cover. We connect recent development in spherical conic metrics to this old problem, and give a new m…

2018-05-08abs ↗pdf ↗

Study branched coverings of singular (G,X)-manifolds, solving open questions.

problem Understanding branched coverings of singular (G,X)-manifolds.
method Developed a Galois theory for branched coverings, constructed developping maps for singular manifolds.
result Solved open questions and constructed new examples related to singular (G,X)-manifolds.

Study geometric properties of branched covers of hyperbolic manifolds.

problem Geometric analysis of branched covers of hyperbolic manifolds.
method Analysis of geometric properties of covers of hyperbolic manifolds branched along a totally geodesic submanifold.
result Results on geometric properties of branched covers of hyperbolic manifolds.

Using the relation between Khovanov homology and the Heegaard Floer homology of branched double covers, we show how Khovanov homology can be used to establish tightness of branched double covers of certain transverse knots. We give examples of several infinite families of knots whose branched covers are tight for Khova…

2008-02-26abs ↗pdf ↗

Authors prove a contact structure result using branched covers and overtwisted disks.

problem Proving a contact structure result using branched covers and overtwisted disks.
method Explicitly constructing an overtwisted disk in the pp-fold cyclic branched cover of S3S^3.
result An overtwisted disk is contained in the complement of the branch locus.

Many three dimensional manifolds are two-fold branched covers of the three dimensional sphere. However, there are some that are not. This paper includes exposition about two-fold branched covers and many examples. It shows that there are three dimensional homology spheres that do not two-fold branched cover any manifol…

2012-12-27abs ↗pdf ↗

Loi and Piergallini showed that a smooth compact, connected 44-manifold XX with boundary admits a Stein structure if and only if XX is a simple branched cover of a 44-disk D4D^4 branched along a positive braided surface SS in a bidisk D12×D22D4D_{1}^{2} \times D_{2}^{2} \approx D^4. For each integer N2N \geq 2, we constr…

2015-08-05abs ↗pdf ↗

Study on pretzel knots showing cyclic branched covers are L-spaces.

problem Understanding cyclic branched covers of pretzel knots and their properties.
method Analyzing pretzel knots KkK_k and their nn-fold cyclic branched covers for all n1n\geq 1.
result The nn-fold cyclic branched covers of pretzel knots KkK_k are L-spaces for all n1n\geq 1.

We identify branched coverings (continuous open surjections p:Y->X of Hausdorff spaces with uniformly bounded number of pre-images) with Hilbert C*-modules C(Y) over C(X) and with faithful unital positive conditional expectations E:C(Y)->C(X) topologically of index-finite type. The case of non-branched coverings corres…

2010-02-18abs ↗pdf ↗

A canonical branched covering over each sufficiently good simplicial complex is constructed. Its structure depends on the combinatorial type of the complex. In this way, each closed orientable 3-manifold arises as a branched covering over the 3-sphere from some triangulation of S^3. This result is related to a theorem …

2001-08-29abs ↗pdf ↗