Semilinear De Morgan monoids and epimorphisms

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Authors

Wannenburg, Johann Joubert
Raftery, James G.

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Publisher

Springer

Abstract

A representation theorem is proved for De Morgan monoids that are (i) semilinear, i.e., subdirect products of totally ordered algebras, and (ii) negatively generated, i.e., generated by lower bounds of the neutral element. Using this theorem, we prove that the De Morgan monoids satisfying (i) and (ii) form a variety—in fact, a locally finite variety. We then prove that epimorphisms are surjective in every variety of negatively generated semilinear De Morgan monoids. In the process, epimorphism-surjectivity is established for several other classes as well, including the variety of all semilinear idempotent commutative residuated lattices and all varieties of negatively generated semilinear Dunn monoids. The results settle natural questions about Beth-style definability for a range of substructural logics.

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DATA AVAILABILITY : Data sharing not applicable to this article as datasets were neither generated nor analysed.

Keywords

Epimorphism, Semilinear, Residuated lattice, De Morgan monoid, Dunn monoid, Substructural logic, Relevance logic, Beth definability

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Citation

Wannenburg, J.J., Raftery, J.G. Semilinear De Morgan monoids and epimorphisms. Algebra universalis 85, 10 (2024). https://doi.org/10.1007/s00012-023-00837-1.