VLDB 2026 Research / reviewers in the wild / expert
Pierre Gillibert
dblp:93/572
· DBLP profile ↗
3ranked-venue papers
3as first author
2since 2021 · last 2022
0000-0003-0981-4652ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Theory of computation · 3 · 3 first-author · 2 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | The VC-dimension of axis-parallel boxes on the Torus
Pierre Gillibert, Thomas Lachmann, Clemens Müllner |
J. Complex. | 1 |
| 2022 | When Symmetries Are Not Enough: A Hierarchy of Hard Constraint Satisfaction ProblemsabstractWe produce a class of $\omega$-categorical structures with finite signature by applying a model-theoretic construction---a refinement of the Hrushovski-encoding---to $\omega$-categorical structures in a possibly infinite signature. We show that the encoded structures retain desirable algebraic properties of the original structures, but that the constraint satisfaction problems (CSPs) associated with these structures can be badly behaved in terms of computational complexity. This method allows us to systematically generate $\omega$-categorical templates whose CSPs are complete for a variety of complexity classes of arbitrarily high complexity and $\omega$-categorical templates that show that membership in any given complexity class containing AC$^0$ cannot be expressed by a set of identities on the polymorphisms. It moreover enables us to prove that recent results about the relevance of topology on polymorphism clones of $\omega$-categorical structures also apply for CSP templates, i.e., structures in a finite language. Finally, we obtain a concrete algebraic criterion which could constitute a description of the delineation between tractability and NP-hardness in the dichotomy conjecture for first-order reducts of finitely bounded homogeneous structures. Pierre Gillibert, Julius Jonusas, Michael Kompatscher, Antoine Mottet, Michael Pinsker |
SIAM J. Comput. | 1 |
| 2020 | Hrushovski's Encoding and ω-Categorical CSP MonstersabstractWe produce a class of ω-categorical structures with finite signature by applying a model-theoretic construction - a refinement of an encoding due to Hrushosvki - to ω-categorical structures in a possibly infinite signature. We show that the encoded structures retain desirable algebraic properties of the original structures, but that the constraint satisfaction problems (CSPs) associated with these structures can be badly behaved in terms of computational complexity. This method allows us to systematically generate ω-categorical templates whose CSPs are complete for a variety of complexity classes of arbitrarily high complexity, and ω-categorical templates that show that membership in any given complexity class cannot be expressed by a set of identities on the polymorphisms. It moreover enables us to prove that recent results about the relevance of topology on polymorphism clones of ω-categorical structures also apply for CSP templates, i.e., structures in a finite language. Finally, we obtain a concrete algebraic criterion which could constitute a description of the delineation between tractability and NP-hardness in the dichotomy conjecture for first-order reducts of finitely bounded homogeneous structures. Pierre Gillibert, Julius Jonusas, Michael Kompatscher, Antoine Mottet, Michael Pinsker |
ICALP | 1 |