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Extending (τ-)tilting subcategories and (co)silting modules

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Abstract Let B be a finite dimensional algebra and A=B[P0] be the one-point extension algebra of B with respect to the finitely generated projective B-module P0. The categories of B-modules and A-modules are related by two adjoint functors R and E, called the restriction and the extension functors, respectively. Based on the nice homological properties of these two functors, restriction and extension of some notions such as tilting and tau-tilting modules have been studied in the category of finitely presented modules, i.e. small mod. In this paper, we investigate the behaviour of tilting and support tau-tilting subcategories with respect to these two functors. Moreover, we investigate the restriction and the extension of special related modules such as finendo quasi-tilting modules, silting modules, and cosilting modules. Our studies will be done in the category of all modules, which will be called large Mod. Based on such study, in addition to the new results, classical results are extended, not only from modules to subcategories but also from small mod to large Mod.
Title: Extending (τ-)tilting subcategories and (co)silting modules
Description:
Abstract Let B be a finite dimensional algebra and A=B[P0] be the one-point extension algebra of B with respect to the finitely generated projective B-module P0.
The categories of B-modules and A-modules are related by two adjoint functors R and E, called the restriction and the extension functors, respectively.
Based on the nice homological properties of these two functors, restriction and extension of some notions such as tilting and tau-tilting modules have been studied in the category of finitely presented modules, i.
e.
small mod.
In this paper, we investigate the behaviour of tilting and support tau-tilting subcategories with respect to these two functors.
Moreover, we investigate the restriction and the extension of special related modules such as finendo quasi-tilting modules, silting modules, and cosilting modules.
Our studies will be done in the category of all modules, which will be called large Mod.
Based on such study, in addition to the new results, classical results are extended, not only from modules to subcategories but also from small mod to large Mod.

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