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Maximal self-orthogonal modules and a new generalization of tilting modules

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arxiv 2301.13498 v2 pith:HXZJNQDJ submitted 2023-01-31 math.RT math.RA

classification math.RTmath.RA
keywords modulesself-orthogonaltiltingwakamatsuprovealgebraconjecturesdimension
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We introduce a generalization of tilting modules of finite projective dimension, projectively Wakamatsu tilting modules, which are self-orthogonal and Ext-progenerators in their Ext-perpendicular categories. Under a certain finiteness condition, we prove that the following modules coincide: projectively Wakamatsu tilting, Wakamatsu tilting, maximal self-orthogonal, and self-orthogonal modules with the same rank as the algebra. This provides another proof of the weak Gorensteinness of representation-finite algebras. To prove this, we introduce Bongartz completion of self-orthogonal modules and characterize its existence. Moreover, we study a binary relation on Wakamatsu tilting modules which extends the poset of tilting modules, and use it to prove that every self-orthogonal module over a representation-finite Iwanaga-Gorenstein algebra has finite projective dimension. Finally, we discuss several conjectures related to self-orthogonal modules and their connections to famous homological conjectures.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. $\omega$-left approximation dimensions under Stable equivalence

    math.RT 2025-07 conditional novelty 6.0 of 10

    Stable equivalence preserves ω-left approximation dimensions and the Wakamatsu tilting conjecture for Artin algebras without nodes or semisimple direct summands.

  2. Tilting-completion for gentle algebras

    math.RT 2024-12 conditional novelty 6.0 of 10

    For gentle algebras, almost-tilting modules always complete to tilting modules with at most 2n complements, matching a modified version of Happel's conjecture.

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