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Weak expansion properties and large deviation principles for expanding Thurston maps

Published 31 Jan 2015 in math.DS | (1502.00153v1)

Abstract: In this paper, we prove that an expanding Thurston map $f\colon S2 \rightarrow S2$ is asymptotically $h$-expansive if and only if it has no periodic critical points, and that no expanding Thurston map is $h$-expansive. As a consequence, for each expanding Thurston map without periodic critical points and each real-valued continuous potential on $S2$, there exists at least one equilibrium state. For such maps, we also establish large deviation principles for iterated preimages and periodic points. It follows that iterated preimages and periodic points are equidistributed with respect to the unique equilibrium state for an expanding Thurston map without periodic critical points and a potential that is H\"older continuous with respect to a visual metric on $S2$.

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