Guts of Surfaces and the Colored Jones Polynomial

This monograph derives direct and concrete relations between colored Jones polynomials and the topology of incompressible spanning surfaces in knot and link complements. Under mild diagrammatic hypotheses, we prove that the growth of the degree of the colored Jones polynomials is a boundary slope of...

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Detalhes bibliográficos
Principais autores: Futer, David. (Autor, http://id.loc.gov/vocabulary/relators/aut), Kalfagianni, Efstratia. (http://id.loc.gov/vocabulary/relators/aut), Purcell, Jessica. (http://id.loc.gov/vocabulary/relators/aut)
Autor Corporativo: SpringerLink (Online service)
Formato: Recurso Eletrônico livro eletrônico
Idioma:English
Publicado em: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2013.
Edição:1st ed. 2013.
coleção:Lecture Notes in Mathematics, 2069
Assuntos:
Acesso em linha:https://doi.org/10.1007/978-3-642-33302-6
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Descrição
Resumo:This monograph derives direct and concrete relations between colored Jones polynomials and the topology of incompressible spanning surfaces in knot and link complements. Under mild diagrammatic hypotheses, we prove that the growth of the degree of the colored Jones polynomials is a boundary slope of an essential surface in the knot complement. We show that certain coefficients of the polynomial measure how far this surface is from being a fiber for the knot; in particular, the surface is a fiber if and only if a particular coefficient vanishes. We also relate hyperbolic volume to colored Jones polynomials. Our method is to generalize the checkerboard decompositions of alternating knots. Under mild diagrammatic hypotheses, we show that these surfaces are essential, and obtain an ideal polyhedral decomposition of their complement. We use normal surface theory to relate the pieces of the JSJ decomposition of the  complement to the combinatorics of certain surface spines (state graphs). Since state graphs have previously appeared in the study of Jones polynomials, our method bridges the gap between quantum and geometric knot invariants.
Descrição Física:X, 170 p. 62 illus., 45 illus. in color. online resource.
ISBN:9783642333026
ISSN:0075-8434 ;