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ЖУРНАЛЫ // Функциональный анализ и его приложения

Функц. анализ и его прил., 1991, том 25, выпуск 3, страницы 80–82 (Mi faa886)

Конечномерность $\operatorname{Ext}^n$-ов и $\operatorname{Tor}_n$-ов простых модулей над одним классом алгебр
В. В. Бавула

Эта публикация цитируется в следующих статьяx:
  1. V.V. Bavula, “Δ-locally nilpotent algebras, their ideal structure and simplicity criteria”, Journal of Pure and Applied Algebra, 2025, 107861  crossref
  2. V. V. Bavula, “Inner generalized Weyl algebras and their simplicity criteria”, J. Algebra Appl., 23:13 (2024)  crossref
  3. V.V. Bavula, “Description of bi-quadratic algebras on 3 generators with PBW basis”, Journal of Algebra, 631 (2023), 695  crossref
  4. Samuel A. Lopes, Farrokh Razavinia, “Quantum generalized Heisenberg algebras and their representations”, Communications in Algebra, 50:2 (2022), 463  crossref
  5. V. V. Bavula, V. Levandovskyy, “A Remark on the Dixmier Conjecture”, Can. Math. Bull., 63:1 (2020), 6  crossref
  6. V. V. Bavula, “Generalized Weyl algebras and diskew polynomial rings”, J. Algebra Appl., 19:10 (2020), 2050194  crossref
  7. V. V. Bavula, “The generalized Weyl Poisson algebras and their Poisson simplicity criterion”, Lett Math Phys, 110:1 (2020), 105  crossref
  8. V. Bavula, K. Alnefaie, Contemporary Mathematics, 751, Categorical, Homological and Combinatorial Methods in Algebra, 2020, 33  crossref
  9. Ebrahim Ebrahim, “The prime spectrum and representation theory of the 2 × 2 reflection equation algebra”, Communications in Algebra, 47:3 (2019), 1153  crossref
  10. V. Bavula, T. Lu, Contemporary Mathematics, 727, Rings, Modules and Codes, 2019, 49  crossref
  11. Xiangui Zhao, Qiuhui Mo, Yang Zhang, “Gelfand–Kirillov dimension of generalized Weyl algebras (In memory of Guenter Rudolf Krause (1941–2015))”, Communications in Algebra, 46:10 (2018), 4403  crossref
  12. Jonas T. Hartwig, “Noncommutative fiber products and lattice models”, Journal of Algebra, 508 (2018), 35  crossref
  13. Munerah Almulhem, Tomasz Brzeziński, “Skew derivations on generalized Weyl algebras”, Journal of Algebra, 493 (2018), 194  crossref
  14. V. Bavula, V. Bekkert, V. Futorny, “Indecomposable generalized weight modules over the algebra of polynomial integro-differential operators”, Proc. Amer. Math. Soc., 146:6 (2018), 2373  crossref
  15. V. V. Bavula, T. Lu, “Torsion simple modules over the quantum spatial ageing algebra”, Communications in Algebra, 45:10 (2017), 4166  crossref
  16. V. V. Bavula, “Quiver Generalized Weyl Algebras, Skew Category Algebras and Diskew Polynomial Rings”, Math.Comput.Sci., 11:3-4 (2017), 253  crossref
  17. V. V. Bavula, T. Lu, “The quantum euclidean algebra and its prime spectrum”, Isr. J. Math., 219:2 (2017), 929  crossref
  18. V. V. Bavula, T. Lu, “The Prime Spectrum and Simple Modules Over the Quantum Spatial Ageing Algebra”, Algebr Represent Theor, 19:5 (2016), 1109  crossref
  19. Commutation Relations, Normal Ordering, and Stirling Numbers, 2015, 419  crossref
  20. В. В. Бавула, “Алгебры Ли треугольных полиномиальных дифференцирований и критерий изоморфности их факторалгебр Ли”, Изв. РАН. Сер. матем., 77:6 (2013), 3–44  mathnet  crossref  mathscinet  zmath  adsnasa  elib; V. V. Bavula, “Lie algebras of triangular polynomial derivations and an isomorphism criterion for their Lie factor algebras”, Izv. Math., 77:6 (2013), 1067–1104  crossref  isi
  21. David A. Jordan, Imogen E. Wells, “Simple ambiskew polynomial rings”, Journal of Algebra, 382 (2013), 46  crossref
  22. Hans Erik Nordstrom, “Simple Modules Over Generalized Weyl Algebras and Their Associated Primes”, Communications in Algebra, 40:9 (2012), 3224  crossref
  23. V.V. Bavula, “The group of automorphisms of the Jacobian algebra An”, Journal of Pure and Applied Algebra, 216:3 (2012), 535  crossref
  24. V. V. BAVULA, “On the eigenvector algebra of the product of elements with commutator one in the first Weyl algebra”, Math. Proc. Camb. Phil. Soc., 151:2 (2011), 245  crossref
  25. Lionel Richard, Andrea Solotar, “On Morita Equivalence for Simple Generalized Weyl Algebras”, Algebr Represent Theor, 13:5 (2010), 589  crossref
  26. Jonas T. Hartwig, “Twisted Generalized Weyl Algebras, Polynomial Cartan Matrices and Serre-Type Relations”, Communications in Algebra, 38:12 (2010), 4375  crossref
  27. V.V. Bavula, “The Jacobian algebras”, Journal of Pure and Applied Algebra, 213:5 (2009), 664  crossref
  28. V.V. Bavula, “The Carlitz algebras”, Journal of Pure and Applied Algebra, 212:5 (2008), 1175  crossref
  29. Paul Levy, “Isomorphism problems of noncommutative deformations of type 𝐷 Kleinian singularities”, Trans. Amer. Math. Soc., 361:5 (2008), 2351  crossref
  30. Lars Hellström, Sergei D. Silvestrov, “Ergodipotent maps and commutativity of elements in noncommutative rings and algebras with twisted intertwining”, Journal of Algebra, 314:1 (2007), 17  crossref
  31. Jonas T. Hartwig, “Locally finite simple weight modules over twisted generalized Weyl algebras”, Journal of Algebra, 303:1 (2006), 42  crossref
  32. Ellen Kirkman, James Kuzmanovich, “Fixed subrings of Noetherian graded regular rings”, Journal of Algebra, 288:2 (2005), 463  crossref
  33. V. Bavula, F. van Oystaeyen, “Simple modules of the Witten–Woronowicz algebra”, Journal of Algebra, 271:2 (2004), 827  crossref
  34. V. Bavula, “Solutions to two questions about the Weyl algebras”, Proc. Amer. Math. Soc., 133:6 (2004), 1587  crossref
  35. Ellen E. Kirkman, Lance W. Small, “EXAMPLES OF FCR-ALGEBRAS”, Communications in Algebra, 30:7 (2002), 3311  crossref
  36. V.V Bavula, T.H Lenagan, “Krull Dimension of Generalized Weyl Algebras with Noncommutative Coefficients”, Journal of Algebra, 235:1 (2001), 315  crossref
  37. V. Bavula, D. Jordan, “Isomorphism problems and groups of automorphisms for generalized Weyl algebras”, Trans. Amer. Math. Soc., 353:2 (2000), 769  crossref
  38. V. Bavula, “The simple modules of the ore extensions with coefficients from a dedekind ring”, Communications in Algebra, 27:6 (1999), 2665  crossref
  39. V Bavula, F van Oystaeyen, “Krull Dimension of Generalized Weyl Algebras and Iterated Skew Polynomial Rings: Commutative Coefficients”, Journal of Algebra, 208:1 (1998), 1  crossref
  40. V Bavula, F van Oystaeyen, “The Simple Modules of Certain Generalized Crossed Products”, Journal of Algebra, 194:2 (1997), 521  crossref
  41. Vladimir Bavula, “Filter dimension of algebras and modules, a simplicity criterion of generalized weyl algebras”, Communications in Algebra, 24:6 (1996), 1971  crossref
  42. В. В. Бавула, “Тождественность функции Гильберта и ряда Пуанкаре, размерность модулей над фильтрованными кольцами”, Изв. РАН. Сер. матем., 58:2 (1994), 19–39  mathnet  mathscinet  zmath  adsnasa; V. V. Bavula, “Indentification of the Hilbert function and Poincaré series, and the dimension of modules over filtered rings”, Russian Acad. Sci. Izv. Math., 44:2 (1995), 225–246  crossref  isi


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