A fibering theorem for 3-manifolds

IF 0.1 Q4 MATHEMATICS Groups Complexity Cryptology Pub Date : 2021-01-04 DOI:10.46298/jgcc.2021.13.2.7072
Jordan Sahattchieve
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引用次数: 1

Abstract

We generalize a result of Moon on the fibering of certain 3-manifolds over the circle. Our main theorem is the following: Let $M$ be a closed 3-manifold. Suppose that $G=\pi_1(M)$ contains a finitely generated group $U$ of infinite index in $G$ which contains a non-trivial subnormal subgroup $N\neq \mathbb{Z}$ of $G$, and suppose that $N$ has a composition series of length $n$ in which at least $n-1$ terms are finitely generated. Suppose that $N$ intersects nontrivially the fundamental groups of the splitting tori given by the Geometrization Theorem and that the intersections of $N$ with the fundamental groups of the geometric pieces are non-trivial and not isomorphic to $\mathbb{Z}$. Then, $M$ has a finite cover which is a bundle over $\mathbb{S}$ with fiber a compact surface $F$ such that $\pi_1(F)$ and $U$ are commensurable.
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3流形的成纤维定理
我们推广了月亮关于某些3-流形在圆上的纤维化的结果。我们的主要定理如下:设$M$是一个封闭的3流形。假设$G=\pi_1(M)$在$G$中包含一个有限生成的infiniteindex群$U$,其中包含一个$G$的非平凡次正规子群$N\neq \mathbb{Z}$,并假设$N$有一个长度为$n$的组合序列,其中至少有$n-1$个项是有限生成的。假设$N$与由几何化定理给出的分裂环面的基群非平凡相交,并且$N$与几何块的基群的相交非平凡且与$\mathbb{Z}$不同构。然后,$M$有一个有限的覆盖物,它是一束在$\mathbb{S}$上的纤维,一个紧凑的表面$F$,这样$\pi_1(F)$和$U$是可通约的。
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