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- W3183409171 abstract "The site-bond percolation problem in two-dimensional kagome lattices has been studied by means of theoretical modeling and numerical simulations. Motivated by considerations of cluster connectivity, two distinct schemes (denoted as $Sensuremath{cap}B$ and $Sensuremath{cup}B$) have been considered. In $Sensuremath{cap}B$ ($Sensuremath{cup}B$), two points are connected if a sequence of occupied sites and ($mathit{or}$) bonds joins them. Analytical and simulation approaches, supplemented by analysis using finite-size scaling theory, were used to calculate the phase boundaries between the percolating and nonpercolating regions, thus determining the complete phase diagram of the system in the (${p}_{s},{p}_{b}$) space. In the case of the $Sensuremath{cap}B$ model, the obtained results are in excellent agreement with previous theoretical and numerical predictions. In the case of the $Sensuremath{cup}B$ model, the limiting curve separating percolating and nonpercolating regions is reported here." @default.
- W3183409171 created "2021-08-02" @default.
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- W3183409171 date "2021-07-23" @default.
- W3183409171 modified "2023-10-17" @default.
- W3183409171 title "Site-bond percolation in two-dimensional kagome lattices: Analytical approach and numerical simulations" @default.
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- W3183409171 doi "https://doi.org/10.1103/physreve.104.014130" @default.
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