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Homologies of monomial operads and algebras

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Homologies of monomial operads and algebras. / Iyudu, Natalia; Vlassopoulos, Ioannis.
In: arXiv.org, 03.08.2020.

Research output: Contribution to Journal/MagazineJournal article

Harvard

Iyudu, N & Vlassopoulos, I 2020, 'Homologies of monomial operads and algebras', arXiv.org.

APA

Iyudu, N., & Vlassopoulos, I. (2020). Homologies of monomial operads and algebras. arXiv.org.

Vancouver

Iyudu N, Vlassopoulos I. Homologies of monomial operads and algebras. arXiv.org. 2020 Aug 3.

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Iyudu, Natalia ; Vlassopoulos, Ioannis. / Homologies of monomial operads and algebras. In: arXiv.org. 2020.

Bibtex

@article{0e71430e259e408a98ca63f5f5c2e05d,
title = "Homologies of monomial operads and algebras",
abstract = " We consider the bar complex of a monomial non-unital associative algebra $A=k \langle X \rangle / (w_1,...,w_t)$. It splits as a direct sum of complexes $B_w$, defined for any fixed monomial $w=x_1...x_n \in A$. We give a simple argument, showing that the homology of this subcomplex is at most one-dimensional, and describe the place where the nontrivial homology appears. It has a very simple expression in terms of the length of the generalized Dyck path associated to a given monomial in $w \in A$. The operadic analogue of the question about dichotomy in homology is considered. It is shown that dichotomy holds in case when monomial tree-relations form an order. Examples are given showing that in general dichotomy and homological purity does not hold. For quadratic operads, the combinatorial tool for calculating homology in terms of relation graphs is developed. Example of using these methods to compute homology in truncated binary operads is given. ",
keywords = "math.RA",
author = "Natalia Iyudu and Ioannis Vlassopoulos",
note = "20 pages",
year = "2020",
month = aug,
day = "3",
language = "English",
journal = "arXiv.org",

}

RIS

TY - JOUR

T1 - Homologies of monomial operads and algebras

AU - Iyudu, Natalia

AU - Vlassopoulos, Ioannis

N1 - 20 pages

PY - 2020/8/3

Y1 - 2020/8/3

N2 - We consider the bar complex of a monomial non-unital associative algebra $A=k \langle X \rangle / (w_1,...,w_t)$. It splits as a direct sum of complexes $B_w$, defined for any fixed monomial $w=x_1...x_n \in A$. We give a simple argument, showing that the homology of this subcomplex is at most one-dimensional, and describe the place where the nontrivial homology appears. It has a very simple expression in terms of the length of the generalized Dyck path associated to a given monomial in $w \in A$. The operadic analogue of the question about dichotomy in homology is considered. It is shown that dichotomy holds in case when monomial tree-relations form an order. Examples are given showing that in general dichotomy and homological purity does not hold. For quadratic operads, the combinatorial tool for calculating homology in terms of relation graphs is developed. Example of using these methods to compute homology in truncated binary operads is given.

AB - We consider the bar complex of a monomial non-unital associative algebra $A=k \langle X \rangle / (w_1,...,w_t)$. It splits as a direct sum of complexes $B_w$, defined for any fixed monomial $w=x_1...x_n \in A$. We give a simple argument, showing that the homology of this subcomplex is at most one-dimensional, and describe the place where the nontrivial homology appears. It has a very simple expression in terms of the length of the generalized Dyck path associated to a given monomial in $w \in A$. The operadic analogue of the question about dichotomy in homology is considered. It is shown that dichotomy holds in case when monomial tree-relations form an order. Examples are given showing that in general dichotomy and homological purity does not hold. For quadratic operads, the combinatorial tool for calculating homology in terms of relation graphs is developed. Example of using these methods to compute homology in truncated binary operads is given.

KW - math.RA

M3 - Journal article

JO - arXiv.org

JF - arXiv.org

ER -