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1.
The well-known Schur's Lemma states that the endomorphism ring of a simple module is a division ring. But the converse is not true in general. In this paper we study modules whose endomorphism rings are division rings. We first reduce our consideration to the case of faithful modules with this property. Using the existence of such modules, we obtain results on a new notion which generalizes that of primitive rings. When R is a full or triangular matrix ring over a commutative ring, a structure theorem is proved for an R-module M such that End R (M) is a division ring. A number of examples are given to illustrate our results and to motivate further study on this topic.  相似文献   

2.
It is well known that the Rickart property of rings is not a left-right symmetric property. We extend the notion of the left Rickart property of rings to a general module theoretic setting and define 𝔏-Rickart modules. We study this notion for a right R-module M R where R is any ring and obtain its basic properties. While it is known that the endomorphism ring of a Rickart module is a right Rickart ring, we show that the endomorphism ring of an 𝔏-Rickart module is not a left Rickart ring in general. If M R is a finitely generated 𝔏-Rickart module, we prove that End R (M) is a left Rickart ring. We prove that an 𝔏-Rickart module with no set of infinitely many nonzero orthogonal idempotents in its endomorphism ring is a Baer module. 𝔏-Rickart modules are shown to satisfy a certain kind of nonsingularity which we term “endo-nonsingularity.” Among other results, we prove that M is endo-nonsingular and End R (M) is a left extending ring iff M is a Baer module and End R (M) is left cononsingular.  相似文献   

3.
A principal right ideal of a ring is called uniquely generated if any two elements of the ring that generate the same principal right ideal must be right associated (i.e., if for all a,b in a ring R, aR = bR implies a = bu for some unit u of R). In the present paper, we study “uniquely generated modules” as a module theoretic version of “uniquely generated ideals,” and we obtain a characterization of a unit-regular endomorphism ring of a module in terms of certain uniquely generated submodules of the module among some other results: End(M) is unit-regular if and only if End(M) is regular and all M-cyclic submodules of a right R-module M are uniquely generated. We also consider the questions of when an arbitrary element of a ring is associated to an element with a certain property. For example, we consider this question for the ring R[x;σ]∕(xn+1), where R is a strongly regular ring with an endomorphism σ be an endomorphism of R.  相似文献   

4.
A. Alhevaz  M. Habibi 《代数通讯》2013,41(4):1195-1221
ABSTRACT

In this paper, we study the behavior of the couniform (or dual Goldie) dimension of a module under various polynomial extensions. For a ring automorphism σ ∈ Aut(R), we use the notion of a σ-compatible module M R to obtain results on the couniform dimension of the polynomial modules M[x], M[x ?1], and M[x, x ?1] over suitable skew extension rings.  相似文献   

5.
Given a left R-module M, we study the connection between the (right and left) properties of its endomorphism ring S=End(RM) and the properties of the category σ f [M] of all submodules of finitely M-generated left R-modules.  相似文献   

6.
Summary LetR be a valuation domain,S a maximal immediate extension ofR. We introduce the definition of unitary independence. We use units ofS, which are unitarily independent over an ideal ofR, to construct indecomposable finitely generatedR-modules with Goldie dimension greater than one. We prove that, ifR is archimedean, the endomorphism ring of an indecomposable finitely generatedR-module is local. On the other hand, we prove that, ifR is a suitable non archimedean valuation domain, there exist indecomposable finitely generatedR-modulesM such that End (M) is not local.
Riassunto SiaR un dominio di valutazione,S un'estensione massimale immediate diR. Si introduce la definizione di indipendenza unitaria. Si usano unità diS unitariamente indipendenti su un ideale diR per costruireR-moduli finitamente generati indecomponibili con dimensione di Goldie maggiore di uno. Si dimostra che, seR è archimedeo, l'anello degli endomorfismi di unR-modulo finitamente generato indecomponibile è locale. Si prova altresì che, seR è un opportuno dominio di valutazione non archimedeo, esistonoR-moduliM finitamente generati indecomponibili, tali che End (M) non è locale.


Lavoro eseguito nell'ambito del GNSAGA.  相似文献   

7.
A ring is called right P-coherent if every principal right ideal is finitely presented. Let M R be a right R-module. We study the P-coherence of the endomorphism ring S of M R . It is shown that S is a right P-coherent ring if and only if every endomorphism of M R has a pseudokernel in add M R ; S is a left P-coherent ring if and only if every endomorphism of M R has a pseudocokernel in add M R . Some applications are given.  相似文献   

8.
In this note we prove two theorems. In theorem 1 we prove that if M andN are two non-zero reflexive modules of finite projective dimensions over a Gorenstein local ring, such that Hom (M, N) is a third module of syzygies, then the natural homomorphismM* ⊗N → Hom (M, N) is an isomorphism. This extends the result in [7]. In theorem 2, we prove that projective dimension of a moduleM over a regular local ringR is less than or equal ton if and only if ExtR n (M, R) ⊗M → ExtR n (M, M) is surjective; in which case it is actually bijective. This extends the usual criterion for the projectivity of a module.  相似文献   

9.
Torsion-free Abelian groups G and H are called quasi-equal (GH) if λGHG for a certain natural number ≈. It is known (see [3]) that the quasi-equality of torsion-free Abelian groups can be represented as the equality in an appropriate factor category. Thus while dealing with certain group properties it is usual to prove that the property under consideration is preserved under the transition to a quasi-equal group. This trick is especially frequently used when the author investigates module properties of Abelian groups; here a group is considered as a left module over its endomorphism ring. On the other hand, a topical problem in the Abelian group theory is the problem of investigation of pureness in the category of Abelian groups (see [4]). We consider the pureness introduced by P. Cohn [2] for Abelian groups as modules over their endomorphism rings. Particularity of the investigation of the properties of pureness for the Abelian group G as the module E (G)G lies in the fact that this is a more general situation than the investigation of pureness for a unitary module over an arbitrary ring R with the identity element. Indeed, if R M is an arbitrary unitary left module and M + is its Abelian group, then each element from R can be identified with an appropriate endomorphism from the ring E(M +) under the canonical ring homomorphism RE(M +). Then it holds that if E(M+) N is a pure submodule in E(M+) M +, then R N is a pure submodule in R M. In the present paper the interrelations between pureness, servantness, and quasi-decompositions for Abelian torsion-free groups of finite rank will be investigated. __________ Translated from Fundamentalnaya i Prikladnaya Matematika (Fundamental and Applied Mathematics), Vol. 10, No. 2, pp. 225–238, 2004.  相似文献   

10.
M. Habibi 《代数通讯》2013,41(2):842-852
Let R be a ring with an endomorphism σ and F ∪ {0} the free monoid generated by U = {u 1,…, u t } with 0 added, and M a factor of F setting certain monomial in U to 0, enough so that, for some n, M n  = 0. In this article, we study various annihilator properties and a variety of conditions and related properties that the skew monoid ring R[M; σ] is inherited from R.  相似文献   

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