Giorgi Japaridze
Giorgi Japaridze is a Georgian-American researcher in logic and theoretical computer science. He currently holds the title of Full Professor at the Computing Sciences Department of Villanova University. Japaridze is best known for his invention of computability logic, cirquent calculus, and Japaridze's polymodal logic.
Research
During 1985–1988 Japaridze elaborated the system GLP, known as Japaridze's polymodal logic. This is a system of modal logic with the "necessity" operators ,,,…, understood as a natural series of incrementally weak provability predicates for Peano arithmetic. In "The polymodal logic of provability" Japaridze proved the arithmetical completeness of this system, as well as its inherent incompleteness with respect to Kripke frames. GLP has been extensively studied by various authors during the subsequent three decades, especially after Lev Beklemishev, in 2004, pointed out its usefulness in understanding the proof theory of arithmetic.Japaridze has also studied the first-order versions of provability logic. He came up with an axiomatization of the single-variable fragment of that logic, and proved its arithmetical completeness and decidability. In the same paper he showed that, on the condition of the 1-completeness of the underlying arithmetical theory, predicate provability logic with non-iterated modalities is recursively enumerable. In he did the same for the predicate provability logic with non-modalized quantifiers.
In 1992–1993, Japaridze came up with the concepts of cointerpretability, tolerance and cotolerance, naturally arising in interpretability logic. He proved that cointerpretability is equivalent to 1-conservativity and tolerance is equivalent to 1-consistency. The former was an answer to the long-standing open problem regarding the metamathematical meaning of 1-conservativity. Within the same line of research, Japaridze constructed the modal logics of tolerance and of the arithmetical hierarchy, and proved their arithmetical completeness.
In 2002 Japaridze introduced "the Logic of Tasks", which later became a part of his Abstract Resource Semantics on one hand, and a fragment of Computability Logic on the other hand.
Japaridze is best known for founding Computability Logic in 2003 and making subsequent contributions to its evolution. This is a long-term research program and a semantical platform for "redeveloping logic as a formal theory of computability, as opposed to the formal theory of truth that it has more traditionally been".
In 2006 Japaridze conceived cirquent calculus as a proof-theoretic approach that manipulates graph-style constructs, termed cirquents, instead of the more traditional and less general tree-like constructs such as formulas or sequents. This novel proof-theoretic approach was later successfully used to "tame" various fragments of computability logic, which had otherwise stubbornly resisted all axiomatization attempts using the traditional proof systems such as sequent calculus or Hilbert-style systems. It was also used to axiomatize the purely propositional fragment of independence-friendly logic.
The birth of cirquent calculus was accompanied with offering the associated "abstract resource semantics". Cirquent calculus with that semantics can be seen as a logic of resources which, unlike linear logic, makes it possible to account for resource-sharing. As such, it has been presented as a viable alternative to linear logic by Japaridze, who repeatedly has criticized the latter for being neither sufficiently expressive nor complete as a resource logic. This challenge, however, has remained largely unnoticed by the linear logic community, which never responded to it.
Japaridze has cast a similar challenge to intuitionistic logic, criticizing it for lacking a convincing semantical justification the associated constructivistic claims, and for being incomplete as a result of "throwing out the baby with the bath water". Heyting's intuitionistic logic, in its full generality, has been shown to be sound but incomplete with respect to the semantics of computability logic. The positive propositional fragment of intuitionistic logic, however, has been proven to be complete with respect to the computability-logic semantics.
In "On the system CL12 of computability logic", on the platform of computability logic, Japaridze generalized the traditional concepts of time and space complexities to interactive computations, and introduced a third sort of a complexity measure for such computations, termed "amplitude complexity".
Among Japaridze's contributions is the elaboration of a series of systems of arithmetic based on computability logic, named "clarithmetics". These include complexity-oriented systems for various combinations of time, space and amplitude complexity classes.
Biography and academic career
Giorgi Japaridze was born in 1961 in Tbilisi, Georgia.He graduated from Tbilisi State University in 1983, received a PhD degree from Moscow State University in 1987, and then a second PhD degree from the University of Pennsylvania in 1998. During 1987–1992 Japaridze worked as a Senior Researcher at the Institute of Philosophy of the Georgian Academy of Sciences. During 1992–1993 he was a Postdoctoral Fellow at the University of Amsterdam. During 1993–1994 he held the position of a Visiting Associate Professor at the University of Notre Dame. He has joined the faculty of Villanova University. Japaridze has also worked as a Visiting Professor at Xiamen University and Shandong University in China.
Awards
In 1982, for his work "Determinism and Freedom of Will", Japaridze received a Medal from the Georgian Academy of Sciences for the best student research paper, granted to one student in the nation each year. In 2015, he received an Outstanding Faculty Research Award from Villanova University, granted to one faculty member each year. Japaridze has been a recipient of various grants and scholarships, including research grants from the US National Science Foundation, Villanova University and Shandong University, Postdoctoral Fellowship from the Dutch government, Smullyan Fellowship from Indiana University, and Dean's Fellowship from the University of Pennsylvania.Related bibliography
- F. Pakhomov, "". Archive for Mathematical Logic 53, pages 949-967.
- D. Fernandez-Duque and J. Joosten, "". Logic Journal of the IGPL 22, pages 933-963.
- W. Xu, "". Logic Journal of the IGPL 22, pages 982-991.
- I. Shapirovsky, "". Advances in Modal Logic 7, pages 289-304.
- L.D. Beklemishev, J.J. Joosten and M. Vervoort, "". Journal of Logic and Computation 15, pages 447-463.
- G. Boolos, "". Annals of Pure and Applied Logic 61, pages 95–111.
Selected publications
- G. Japaridze, "". Logical Methods is Computer Science 12, Issue 3, paper 8, pages 1–59.
- G. Japaridze, "". Logical Methods is Computer Science 12, Issue 3, paper 12, pages 1–62.
- G. Japaridze, "". Information and Computation 247, pages 290-312.
- G. Japaridze, "". Annals of Pure and Applied Logic 165, pages 241-252.
- G. Japaridze, "". Archive for Mathematical Logic 52, pages 213-259.
- G. Japaridze, "". Archive for Mathematical Logic 52, pages 173-212.
- G. Japaridze, "". Applied Mathematics Letters 25, pages 1585-1589.
- G. Japaridze, "". Journal of Logic and Computation 22, pages 605-642.
- G. Japaridze, "". Annals of Pure and Applied Logic 163, pages 377-389.
- G. Japaridze, "". Information and Computation 209, pages 1312-1354.
- G. Japaridze, "". Logical Methods is Computer Science 7, Issue 2, Paper 1, pages 1–55.
- G. Japaridze, "". Theoretical Computer Science 412, pages 971-1004.
- G. Japaridze, "". Journal of Symbolic Logic 75, pages 565-601.
- G. Japaridze, "". Studia Logica 91, pages 1–24.
- G. Japaridze, "". Games: Unifying Logic, Language and Philosophy. O. Majer, A.-V. Pietarinen and T. Tulenheimo, eds. Springer 2009, pages 249-350.
- G. Japaridze, "". Information and Computation 206, pages 1443-1475.
- G. Japaridze, "". Journal of Logic and Computation 18, pages 983-1028.
- G. Japaridze, "". Annals of Pure and Applied Logic 147, pages 187-227.
- G. Japaridze, "". Journal of Symbolic Logic 72, pages 243-276.
- G. Japaridze, "". Acta Cybernetica 18, pages 77–113.
- G. Japaridze, "". Theoretical Computer Science 379, pages 20–52.
- G. Japaridze, "". Theoretical Computer Science 357, pages 100-135.
- G. Japaridze, "". Journal of Logic and Computation 16, pages 489-532.
- G. Japaridze, "". Interactive Computation: The New Paradigm. D. Goldin, S. Smolka and P. Wegner, eds. Springer Verlag, Berlin 2006, pages 183-223.
- G. Japaridze, "". ACM Transactions on Computational Logic 7, pages 331-362.
- G. Japaridze, "". ACM Transactions on Computational Logic 7, pages 302-330.
- G. Japaridze, "". Annals of Pure and Applied Logic 123, pages 1–99.
- G. Japaridze, "". Annals of Pure and Applied Logic 117, pages 261-293.
- G. Japaridze, "". Notre Dame Journal of Formal Logic 41, No. 2, pages 171-183.
- G. Japaridze and D. DeJongh, "". In: Handbook of Proof Theory, S. Buss, ed., North-Holland, 1998, pages 475-545.
- G. Japaridze, "". Annals of Pure and Applied Logic 85, pages 87–156.
- G. Japaridze, "". Notre Dame Journal of Formal Logic 35, pages 346-354.
- G. Japaridze, "". Annals of Pure and Applied Logic 66, pages 89–112.
- G. Japaridze, "". Annals of Pure and Applied Logic 61, pages 113-160.
- G. Japaridze, "". Studia Logica 51, pages 249-277.
- G. Japaridze, "". Studia Logica 50, pages 149-160.
- G. Japaridze, "". Studia Logica 49, pages 7–21.
- S. Artemov and G. Japaridze, "". Journal of Symbolic Logic 55, pages 1090-1098.
- G. Japaridze, "". Intensional Logics and Logical Structure of Theories. Metsniereba, Tbilisi, 1988, pages 16–48.
- S. Artemov and G. Japaridze, "On effective predicate logics of provability". Dokady Mathematics 297, pages 521-523. English translation in: Soviet Mathematics - Doklady 36, pages 478-480.