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On first-order transductions of classes of graphs
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We study various aspects of the first-order transduction quasi-order on graph classes, which provides a way of measuring the relative complexity of graph classes based on whether one can encode the other using a formula of first-order (FO) logic. In contrast with the conjectured simplicity of the transduction quasi-order for monadic second-order logic, the FO-transduction quasi-order is very complex, and many standard properties from structural graph theory and model theory naturally appear in it. We prove a local normal form for transductions among other general results and constructions, which we illustrate via several examples and via the characterizations of the transductions of some simple classes. We then turn to various aspects of the quasi-order, including the (non-)existence of minimum and maximum classes for certain properties, the strictness of the pathwidth hierarchy, the fact that the quasi-order is not a lattice, and the role of weakly sparse classes in the quasi-order.
Forward citations
Cited by 2 Pith papers
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First-order transducibility among classes of sparse graphs
Treewidth t+1 graphs are not first-order transducible from treewidth t graphs, with analogous separations for Hadwiger number and for treewidth 4 graphs from planar graphs.
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k-Planar and Fan-Crossing Drawings and Transductions of Embeddable Graphs
Sparse graph classes are first-order transducible from graphs on a fixed surface if and only if they admit a new type of bounded fan-crossing drawing on that surface.
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