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Towards a Model Theory of Ordered Logics: Expressivity and Interpolation

Bednarczyk, Bartosz; Jaakkola, Reijo (2022-08)

 
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LIPIcs_MFCS_2022_15.pdf (770.1Kt)
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Bednarczyk, Bartosz
Jaakkola, Reijo
08 / 2022

15
doi:10.4230/LIPIcs.MFCS.2022.15
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202212139143

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Peer reviewed
Tiivistelmä
<p>We consider the family of guarded and unguarded ordered logics, that constitute a recently rediscovered family of decidable fragments of first-order logic (FO), in which the order of quantification of variables coincides with the order in which those variables appear as arguments of predicates. While the complexities of their satisfiability problems are now well-established, their model theory, however, is poorly understood. Our paper aims to provide some insight into it. We start by providing suitable notions of bisimulation for ordered logics. We next employ bisimulations to compare the relative expressive power of ordered logics, and to characterise our logics as bisimulation-invariant fragments of FO à la van Benthem. Afterwards, we study the Craig Interpolation Property (CIP). We refute yet another claim from the infamous work by Purdy, by showing that the fluted and forward fragments do not enjoy CIP. We complement this result by showing that the ordered fragment and the guarded ordered logics enjoy CIP. These positive results rely on novel and quite intricate model constructions, which take full advantage of the "forwardness" of our logics.</p>
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