A finiteness theorem for dual graphs of surface singularities
Abstract
Consider a fixed connected, finite graph and equip its vertices with weights which are non-negative integers. We show that there is a finite number of possibilities for the coefficients of the canonical cycle of a numerically Gorenstein surface singularity having as the dual graph of the minimal resolution, the weights of the vertices being the arithmetic genera of the corresponding irreducible components. As a consequence we get that if is not a cycle, then there is a finite number of possibilities of self-intersection numbers which one can attach to the vertices which are of valency , such that one gets the dual graph of the minimal resolution of a numerically Gorenstein surface singularity. Moreover, we describe precisely the situations when there exists an infinite number of possibilities for the self-intersections of the component corresponding to some fixed vertex of .
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Cite
@article{arxiv.0805.1842,
title = {A finiteness theorem for dual graphs of surface singularities},
author = {Patrick Popescu-Pampu and Jose Seade},
journal= {arXiv preprint arXiv:0805.1842},
year = {2009}
}
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10 pages