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An entropy based proof of the Moore bound for irregular graphs

Published 4 Nov 2010 in cs.DM | (1011.1058v1)

Abstract: We provide proofs of the following theorems by considering the entropy of random walks: Theorem 1.(Alon, Hoory and Linial) Let G be an undirected simple graph with n vertices, girth g, minimum degree at least 2 and average degree d: Odd girth: If g=2r+1,then n \geq 1 + d*(\Sum_{i=0}{r-1}(d-1)i) Even girth: If g=2r,then n \geq 2*(\Sum_{i=0}{r-1} (d-1)i) Theorem 2.(Hoory) Let G = (V_L,V_R,E) be a bipartite graph of girth g = 2r, with n_L = |V_L| and n_R = |V_R|, minimum degree at least 2 and the left and right average degrees d_L and d_R. Then, n_L \geq \Sum_{i=0}{r-1}(d_R-1){i/2}(d_L-1){i/2} n_R \geq \Sum_{i=0}{r-1}(d_L-1){i/2}(d_R-1){i/2}

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