On powers of interval graphs and their orders
Florent Foucaud, Reza Naserasr, Aline Parreau, Petru Valicov
Abstract
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Florent Foucaud, Reza Naserasr, Aline Parreau, Petru Valicov
Abstract
Open-access reader
It was proved by Raychaudhuri in 1987 that if a graph power $G^{k-1}$ is an interval graph, then so is the next power $G^k$. This result was extended to $m$-trapezoid graphs by Flotow in 1995. We extend the statement for interval graphs by showing that any interval representation of $G^{k-1}$ can be extended to an interval representation of $G^k$ that induces the same left endpoint and right endpoint orders. The same holds for unit interval graphs. We also show that a similar fact does not hold for trapezoid graphs.
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It was proved by Raychaudhuri in 1987 that if a graph power $G^{k-1}$ is an interval graph, then so is the next power $G^k$. This result was extended to $m$-trapezoid graphs by Flotow in 1995. We extend the statement for interval graphs by showing that any interval representation of $G^{k-1}$ can be extended to an interval representation of $G^k$ that induces the same left endpoint and right endpoint orders. The same holds for unit interval graphs. We also show that a similar fact does not hold for trapezoid graphs.
Key concepts: Interval graph, Combinatorics, Mathematics, Interval (graph theory), Discrete mathematics, Graph, Unit interval, Indifference graph