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February 8, 2026Journal of Algebra and Its Applications0 citations

Quasi-triangular, factorizable anti-symmetric covariant bialgebras and symmetric Rota-Baxter Frobenius algebras

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YXYuxiang Xiao

Key Points

  • The aim is to introduce and explore anti-symmetric covariant bialgebras and establish their relationship with symmetric Rota-Baxter algebras.
  • Introduced anti-symmetric covariant bialgebras as a generalization of balanced infinitesimal bialgebras.
  • Investigated the construction using associative Yang-Baxter pairs under certain symmetry conditions.
  • Developed a factorization theory for factorizable ASC bialgebras.
  • Established a correspondence between symmetric Rota-Baxter Frobenius algebras and factorizable ASC bialgebras.
  • Presented an algorithm for computing associative Yang-Baxter pairs in finite-dimensional algebras.
  • Demonstrated that certain conditions yield a quasi-triangular ASC bialgebra.
  • Established that factorizable ASC bialgebras induce a factorization of their associative algebra.
  • Provided examples of factorizable ASC bialgebras constructed from Rota-Baxter systems.
  • Classified all associative Yang-Baxter pairs in two-dimensional complex associative algebras.

Abstract

This paper introduces the notion of an anti-symmetric covariant (ASC) bialgebra as a generalization of a balanced infinitesimal bialgebra. Our primary focus is on the construction of these algebraic structures from associative Yang-Baxter pairs (AYBPs). We demonstrate that this construction leads to a quasi-triangular ASC bialgebra under the conditions that the AYBP is τ-invariant and τ-symmetric. The relationship between AYBPs in symmetric Frobenius algebras and Rota-Baxter systems is investigated using the formalism of O-operator systems. A central theme of this work is the development of a factorization theory for a special class of these structures, termed factorizable ASC bialgebras. We prove that a factorizable ASC bialgebra induces a factorization of its underlying associative algebra. To characterize these structures, we introduce the concept of a symmetric Rota-Baxter Frobenius algebra and establish a one-to-one correspondence between them and factorizable ASC bialgebras. This correspondence is subsequently employed to construct examples of factorizable ASC bialgebras from Rota-Baxter systems. Finally, we present an algorithm for computing AYBPs in finite-dimensional associative algebras and apply it to classify all such pairs in two-dimensional complex associative algebras, yielding concrete examples of the aforementioned structures.

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Cite This Study

Yuxiang Xiao (2026) studied this question.

synapsesocial.com/papers/6988292d0fc35cd7a884941dhttps://doi.org/10.1142/s0219498827501532
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