2,511 research outputs found

    Local moves on spatial graphs and finite type invariants

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    We define AkA_k-moves for embeddings of a finite graph into the 3-sphere for each natural number kk. Let AkA_k-equivalence denote an equivalence relation generated by AkA_k-moves and ambient isotopy. AkA_k-equivalence implies Akβˆ’1A_{k-1}-equivalence. Let F{\cal F} be an Akβˆ’1A_{k-1}-equivalence class of the embeddings of a finite graph into the 3-sphere. Let G{\cal G} be the quotient set of F{\cal F} under AkA_k-equivalence. We show that the set G{\cal G} forms an abelian group under a certain geometric operation. We define finite type invariants on F{\cal F} of order (n;k)(n;k). And we show that if any finite type invariant of order (1;k)(1;k) takes the same value on two elements of F{\cal F}, then they are AkA_k-equivalent. AkA_k-move is a generalization of CkC_k-move defined by K. Habiro. Habiro showed that two oriented knots are the same up to CkC_k-move and ambient isotopy if and only if any Vassiliev invariant of order ≀kβˆ’1\leq k-1 takes the same value on them. The ` if' part does not hold for two-component links. Our result gives a sufficient condition for spatial graphs to be CkC_k-equivalent.Comment: LaTeX, 18 pages with figures, to appear in Pacific Journal of Mathematic

    Symmetries of spatial graphs and Simon invariants

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    An ordered and oriented 2-component link L in the 3-sphere is said to be achiral if it is ambient isotopic to its mirror image ignoring the orientation and ordering of the components. Kirk-Livingston showed that if L is achiral then the linking number of L is not congruent to 2 modulo 4. In this paper we study orientation-preserving or reversing symmetries of 2-component links, spatial complete graphs on 5 vertices and spatial complete bipartite graphs on 3+3 vertices in detail, and determine the necessary conditions on linking numbers and Simon invariants for such links and spatial graphs to be symmetric.Comment: 16 pages, 14 figure
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