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A Linear Vertex Kernel for Maximum Internal Spanning Tree (0907.3208v2)

Published 20 Jul 2009 in cs.DS and cs.DM

Abstract: We present a polynomial time algorithm that for any graph G and integer k >= 0, either finds a spanning tree with at least k internal vertices, or outputs a new graph G' on at most 3k vertices and an integer k' such that G has a spanning tree with at least k internal vertices if and only if G' has a spanning tree with at least k' internal vertices. In other words, we show that the Maximum Internal Spanning Tree problem parameterized by the number of internal vertices k, has a 3k-vertex kernel. Our result is based on an innovative application of a classical min-max result about hypertrees in hypergraphs which states that "a hypergraph H contains a hypertree if and only if H is partition connected."

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Authors (4)
  1. Fedor V. Fomin (137 papers)
  2. Serge Gaspers (52 papers)
  3. Saket Saurabh (171 papers)
  4. Stéphan Thomassé (82 papers)
Citations (81)

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