|
This article is cited in 11 scientific papers (total in 11 papers)
Complete Theories with Finitely Many Countable Models. II
S. V. Sudoplatov Sobolev Institute of Mathematics, Siberian Branch of the Russian Academy of Sciences
Abstract:
Previously, we obtained a syntactic characterization for the class of complete theories with finitely many pairwise non-isomorphic countable models [1]. The most essential part of that characterization extends to Ehrenfeucht theories (i.e., those having finitely many (but more than 1) pairwise non-isomorphic countable models). As the basic parameters defining a finite number of countable models, Rudin–Keisler quasiorders are treated as well as distribution functions defining the number of limit models for equivalence classes w.r.t. these quasiorders. Here, we argue to state that all possible parameters given in the characterization theorem in [1] are realizable. Also, we describe Rudin–Keisler quasiorders in arbitrary small theories. The construction of models of Ehrenfeucht theories with which we come up in the paper is based on using powerful digraphs which, along with powerful types in Ehrenfeucht theories, always locally exist in saturated models of these theories.
Keywords:
complete theory, Ehrenfeucht theory, number of countable models, Rudin–Keisler quasiorder.
Received: 08.06.2003 Revised: 01.03.2006
Citation:
S. V. Sudoplatov, “Complete Theories with Finitely Many Countable Models. II”, Algebra Logika, 45:3 (2006), 314–353; Algebra and Logic, 45:3 (2006), 180–200
Linking options:
https://www.mathnet.ru/eng/al148 https://www.mathnet.ru/eng/al/v45/i3/p314
|
Statistics & downloads: |
Abstract page: | 430 | Full-text PDF : | 234 | References: | 58 | First page: | 3 |
|