arXiv · 0812.2669
Heat-kernel estimates for random walk among random conductances with heavy tail
Abstract
We study models of discrete-time, symmetric, $\Z^{d}$-valued random walks in random environments, driven by a field of i.i.d. random nearest-neighbor conductances $ω_{xy}\in[0,1]$, with polynomial tail near 0 with exponent $γ>0$. We first prove for all $d\geq5$ that the return probability shows an anomalous decay (non-Gaussian) that approches (up to sub-polynomial terms) a random constant times $n^{-2}$ when we push the power $γ$ to zero. In contrast, we prove that the heat-kernel decay is as close as we want, in a logarithmic sense, to the standard decay $n^{-d/2}$ for large values of the parameter $γ$.
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Omar Boukhadra. 2009-12-30. Heat-kernel estimates for random walk among random conductances with heavy tail. https://arxiv.org/abs/0812.2669
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