Post completeness in modal logic

Author:

Segerberg Krister

Abstract

Let ⊥, →, and □ be primitive, and let us have a countable supply of propositional letters. By a (modal) logic we understand a proper subset of the set of all formulas containing every tautology and being closed under modus ponens and substitution. A logic is regular if it contains every instance of □A ∧ □B ↔ □(A ∧ B) and is closed under the ruleA regular logic is normal if it contains □⊤. The smallest regular logic we denote by C (the same as Lemmon's C2), the smallest normal one by K. If L and L' are logics and LL′, then L is a sublogic of L', and L' is an extension of L; properly so if LL'. A logic is quasi-regular (respectively, quasi-normal) if it is an extension of C (respectively, K).A logic is Post complete if it has no proper extension. The Post number, denoted by p(L), is the number of Post complete extensions of L. Thanks to Lindenbaum, we know thatThere is an obvious upper bound, too:Furthermore,.

Publisher

Cambridge University Press (CUP)

Subject

Logic,Philosophy

Cited by 17 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. TABULARITY AND POST-COMPLETENESS IN TENSE LOGIC;The Review of Symbolic Logic;2022-04-07

2. An Observation Concerning Porte’s Rule in Modal Logic;Bulletin of the Section of Logic;2015-01-01

3. The Power of a Propositional Constant;Journal of Philosophical Logic;2012-12-16

4. Denumerably Many Post-Complete Normal Modal Logics with Propositional Constants;Notre Dame Journal of Formal Logic;2012-01-01

5. The Single-minded Pursuit of Consistency and its Weakness;Studia Logica;2011-01-08

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