Chromatic symmetric functions and polynomial invariants of trees

IF 0.8 3区 数学 Q2 MATHEMATICS
José Aliste-Prieto, Jeremy L. Martin, Jennifer D. Wagner, José Zamora
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引用次数: 0

Abstract

Stanley asked whether a tree is determined up to isomorphism by its chromatic symmetric function. We approach Stanley's problem by studying the relationship between the chromatic symmetric function and other invariants. First, we prove Crew's conjecture that the chromatic symmetric function of a tree determines its generalized degree sequence, which enumerates vertex subsets by cardinality and the numbers of internal and external edges. Second, we prove that the restriction of the generalized degree sequence to subtrees contains exactly the same information as the subtree polynomial, which enumerates subtrees by cardinality and number of leaves. Third, we construct arbitrarily large families of trees sharing the same subtree polynomial, proving and generalizing a conjecture of Eisenstat and Gordon.

树的色度对称函数和多项式不变式
斯坦利提出的问题是,一棵树是否由其色度对称函数决定同构。我们通过研究色度对称函数和其他不变式之间的关系来解决斯坦利的问题。首先,我们证明了克鲁的猜想,即一棵树的色度对称函数决定了它的广义度序列,而广义度序列是通过心率和内外边的数量来枚举顶点子集的。其次,我们证明了广义度序列对子树的限制包含了与子树多项式完全相同的信息,子树多项式通过心率和叶子数来列举子树。第三,我们构建了共享相同子树多项式的任意大的树族,证明并推广了艾森斯塔特和戈登的猜想。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
198
审稿时长
4-8 weeks
期刊介绍: Published by Oxford University Press prior to January 2017: http://blms.oxfordjournals.org/
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