J. M. Cornejo, Michael Kinyon, H. P. Sankappanavar
{"title":"Regular Double p-Algebras: A Converse to a Katriňák Theorem and Applications","authors":"J. M. Cornejo, Michael Kinyon, H. P. Sankappanavar","doi":"10.1515/ms-2023-0099","DOIUrl":null,"url":null,"abstract":"ABSTRACT In 1973, Katriňák proved that regular double p-algebras can be regarded as (regular) double Heyting algebras by ingeniously constructing binary terms for the Heyting implication and its dual in terms of pseudocomplement and its dual. In this paper, we prove a converse to Katriňák’s theorem, in the sense that in the variety ℝDℙℂℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{P}\\mathbb{C}\\mathbb{H}\\] of regular dually pseudocomplemented Heyting algebras, the implication operation → satisfies Katriňák’s formula. As applications of this result together with the above-mentioned Katriňák’s theorem, we show that the varieties ℝDBLℙ \\[\\mathbb{R}\\mathbb{D}\\mathbb{B}\\mathbb{L}\\mathbb{P}\\] , ℝDℙℂℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{P}\\mathbb{C}\\mathbb{H}\\] , ℝℙℂℍd \\[\\mathbb{R}\\mathbb{P}\\mathbb{C}{{\\mathbb{H}}^{d}}\\] and ℝDBLℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{B}\\mathbb{L}\\mathbb{H}\\] of regular double p-algebras, regular dually pseudocomplemented Heyting algebras, regular pseudocomplemented dual Heyting algebras, and regular double Heyting algebras, respectively, are term-equivalent to each other and also that the varieties ℝDMℙ \\[\\mathbb{R}\\mathbb{D}\\mathbb{M}\\mathbb{P}\\] , ℝDMℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{M}\\mathbb{H}\\] , ℝDMDBLℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{M}\\mathbb{D}\\mathbb{B}\\mathbb{L}\\mathbb{H}\\] , ℝDMDBLℙ \\[\\mathbb{R}\\mathbb{D}\\mathbb{M}\\mathbb{D}\\mathbb{B}\\mathbb{L}\\mathbb{P}\\] of regular De Morgan p-algebras, regular De Morgan Heyting algebras, regular De Morgan double Heyting algebras, and regular De Morgan double p-algebras, respectively, are also term-equivalent to each other. From these results and recent results of Adams, Sankappanavar and Vaz de Carvalho on varieties of regular double p-algebras and regular pseudocomplemented De Morgan algebras, we deduce that the lattices of subvarieties of all these varieties have cardinality 2ℵ0 \\[{{2}^{{{\\aleph }_{0}}}}\\] . We then define new logics, ℛDPCℋ \\[\\mathcal{R}\\mathcal{D}\\mathcal{P}\\mathcal{C}\\mathcal{H}\\] , ℛPCℋd \\[\\mathcal{R}\\mathcal{P}\\mathcal{C}{{\\mathcal{H}}^{d}}\\] and ℛDℳℋ \\[\\mathcal{R}\\mathcal{D}\\mathcal{M}\\mathcal{H}\\] , and show that they are algebraizable with ℝDℙℂℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{P}\\mathbb{C}\\mathbb{H}\\] , ℝℙℂℍd \\[\\mathbb{R}\\mathbb{P}\\mathbb{C}{{\\mathbb{H}}^{d}}\\] and ℝDMℍ \\[\\mathbb{R}\\mathbb{D}\\mathbb{M}\\mathbb{H}\\] , respectively, as their equivalent algebraic semantics. It is also deduced that the lattices of extensions of all of the above mentioned logics have cardinality 2ℵ0 \\[{{2}^{{{\\aleph }_{0}}}}\\] .","PeriodicalId":18282,"journal":{"name":"Mathematica Slovaca","volume":"66 12","pages":"1373 - 1388"},"PeriodicalIF":0.9000,"publicationDate":"2023-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Mathematica Slovaca","FirstCategoryId":"100","ListUrlMain":"https://doi.org/10.1515/ms-2023-0099","RegionNum":3,"RegionCategory":"数学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"MATHEMATICS","Score":null,"Total":0}
引用次数: 0
Abstract
ABSTRACT In 1973, Katriňák proved that regular double p-algebras can be regarded as (regular) double Heyting algebras by ingeniously constructing binary terms for the Heyting implication and its dual in terms of pseudocomplement and its dual. In this paper, we prove a converse to Katriňák’s theorem, in the sense that in the variety ℝDℙℂℍ \[\mathbb{R}\mathbb{D}\mathbb{P}\mathbb{C}\mathbb{H}\] of regular dually pseudocomplemented Heyting algebras, the implication operation → satisfies Katriňák’s formula. As applications of this result together with the above-mentioned Katriňák’s theorem, we show that the varieties ℝDBLℙ \[\mathbb{R}\mathbb{D}\mathbb{B}\mathbb{L}\mathbb{P}\] , ℝDℙℂℍ \[\mathbb{R}\mathbb{D}\mathbb{P}\mathbb{C}\mathbb{H}\] , ℝℙℂℍd \[\mathbb{R}\mathbb{P}\mathbb{C}{{\mathbb{H}}^{d}}\] and ℝDBLℍ \[\mathbb{R}\mathbb{D}\mathbb{B}\mathbb{L}\mathbb{H}\] of regular double p-algebras, regular dually pseudocomplemented Heyting algebras, regular pseudocomplemented dual Heyting algebras, and regular double Heyting algebras, respectively, are term-equivalent to each other and also that the varieties ℝDMℙ \[\mathbb{R}\mathbb{D}\mathbb{M}\mathbb{P}\] , ℝDMℍ \[\mathbb{R}\mathbb{D}\mathbb{M}\mathbb{H}\] , ℝDMDBLℍ \[\mathbb{R}\mathbb{D}\mathbb{M}\mathbb{D}\mathbb{B}\mathbb{L}\mathbb{H}\] , ℝDMDBLℙ \[\mathbb{R}\mathbb{D}\mathbb{M}\mathbb{D}\mathbb{B}\mathbb{L}\mathbb{P}\] of regular De Morgan p-algebras, regular De Morgan Heyting algebras, regular De Morgan double Heyting algebras, and regular De Morgan double p-algebras, respectively, are also term-equivalent to each other. From these results and recent results of Adams, Sankappanavar and Vaz de Carvalho on varieties of regular double p-algebras and regular pseudocomplemented De Morgan algebras, we deduce that the lattices of subvarieties of all these varieties have cardinality 2ℵ0 \[{{2}^{{{\aleph }_{0}}}}\] . We then define new logics, ℛDPCℋ \[\mathcal{R}\mathcal{D}\mathcal{P}\mathcal{C}\mathcal{H}\] , ℛPCℋd \[\mathcal{R}\mathcal{P}\mathcal{C}{{\mathcal{H}}^{d}}\] and ℛDℳℋ \[\mathcal{R}\mathcal{D}\mathcal{M}\mathcal{H}\] , and show that they are algebraizable with ℝDℙℂℍ \[\mathbb{R}\mathbb{D}\mathbb{P}\mathbb{C}\mathbb{H}\] , ℝℙℂℍd \[\mathbb{R}\mathbb{P}\mathbb{C}{{\mathbb{H}}^{d}}\] and ℝDMℍ \[\mathbb{R}\mathbb{D}\mathbb{M}\mathbb{H}\] , respectively, as their equivalent algebraic semantics. It is also deduced that the lattices of extensions of all of the above mentioned logics have cardinality 2ℵ0 \[{{2}^{{{\aleph }_{0}}}}\] .
期刊介绍:
Mathematica Slovaca, the oldest and best mathematical journal in Slovakia, was founded in 1951 at the Mathematical Institute of the Slovak Academy of Science, Bratislava. It covers practically all mathematical areas. As a respectful international mathematical journal, it publishes only highly nontrivial original articles with complete proofs by assuring a high quality reviewing process. Its reputation was approved by many outstanding mathematicians who already contributed to Math. Slovaca. It makes bridges among mathematics, physics, soft computing, cryptography, biology, economy, measuring, etc. The Journal publishes original articles with complete proofs. Besides short notes the journal publishes also surveys as well as some issues are focusing on a theme of current interest.