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Euclidean 4-simplices and invariants of four-dimensional manifolds: III. Moves 1 <-> 5 and related structures

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arxiv math/0211167 v1 pith:Q5U4JTUK submitted 2002-11-11 math.GT gr-qc

classification math.GTgr-qc
keywords complexfour-dimensionalmovesacycliceuclideaninvariantmanifoldmanifolds
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We conclude the construction of the algebraic complex, consisting of spaces of differentials of Euclidean metric values, for four-dimensional piecewise-linear manifolds. Assuming that the complex is acyclic, we investigate how its torsion changes under rebuildings of the manifold triangulation. First, we write out formulas for moves 3 -> 3 and 2 <-> 4 based on the results of our two previous works, and then we study in detail moves 1 <-> 5. On this basis, we obtain the formula for a four-dimensional manifold invariant. As an example, we present a detailed calculation of our invariant for sphere S^4; in particular, the complex turns out, indeed, to be acyclic.

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  1. Quantum geometry from higher gauge theory

    gr-qc 2019-08 conditional novelty 7.0 of 10

    The BFCG-Yetter model and the KBF state sum produce the same single-4-simplex amplitude when evaluated on boundary states called G-networks.

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