Recursive percolation
Xuanwen Liu, Youjin Deng, Jesper Lykke Jacobsen
Abstract
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Xuanwen Liu, Youjin Deng, Jesper Lykke Jacobsen
Abstract
Open-access reader
We introduce a simple lattice model in which percolation is constructed on top of critical percolation clusters, and find compelling numerical evidence that it can be repeated recursively any number n of generations. In two dimensions, we determine the percolation thresholds up to n=5. The corresponding critical clusters become more and more compact as n increases, and define universal scaling functions of the standard two-dimensional form and critical exponents that are distinct for any n. This family of exponents differs from previously known universality classes, and cannot be accommodated by existing analytical methods. We confirm that recursive percolation is well defined also in three dimensions.
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We introduce a simple lattice model in which percolation is constructed on top of critical percolation clusters, and find compelling numerical evidence that it can be repeated recursively any number n of generations. In two dimensions, we determine the percolation thresholds up to n=5. The corresponding critical clusters become more and more compact as n increases, and define universal scaling functions of the standard two-dimensional form and critical exponents that are distinct for any n. This family of exponents differs from previously known universality classes, and cannot be accommodated by existing analytical methods. We confirm that recursive percolation is well defined also in three dimensions.
Key concepts: Percolation critical exponents, Directed percolation, Continuum percolation theory, Universality (dynamical systems), Statistical physics, Critical exponent, Percolation threshold, Percolation (cognitive psychology)