arXiv · cond-mat/0001277
Phase Transition in the Takayasu Model with Desorption
Abstract
We study a lattice model where particles carrying different masses diffuse, coalesce upon contact, and also unit masses adsorb to a site with rate $q$ or desorb from a site with nonzero mass with rate $p$. In the limit $p=0$ (without desorption), our model reduces to the well studied Takayasu model where the steady-state single site mass distribution has a power law tail $P(m)\sim m^{-τ}$ for large mass. We show that varying the desorption rate $p$ induces a nonequilibrium phase transition in all dimensions. For fixed $q$, there is a critical $p_c(q)$ such that if $p p_c(q)$, $P(m)\sim \exp(-m/m^*)$ for large $m$. The model is studied analytically within a mean field theory and numerically in one dimension.
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Satya N. Majumdar, Supriya Krishnamurthy, Mustansir Barma. 2000-01-19. Phase Transition in the Takayasu Model with Desorption. https://doi.org/10.1103/physreve.61.6337
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