Topological groups and infinite graphs

From MaRDI portal
Publication:1191934


DOI10.1016/0012-365X(91)90348-6zbMath0757.05060OpenAlexW2050212605MaRDI QIDQ1191934

Wolfgang Woess

Publication date: 27 September 1992

Published in: Discrete Mathematics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/0012-365x(91)90348-6



Related Items

Shannon's theorem for locally compact groups, The Ising model on diluted graphs and strong amenability, CAYLEY–ABELS GRAPHS AND INVARIANTS OF TOTALLY DISCONNECTED, LOCALLY COMPACT GROUPS, Topological and algebraic properties of universal groups for right-angled buildings, Random walks on Baumslag-Solitar groups, Rough ends of infinite primitive permutation groups, Compactifications of horospheric products, Geometry of nontransitive graphs, Ends of graphs. II, Topological groups, automorphisms of infinite graphs and a theorem of Trofimov, Vertex Cuts, Limit distributions of branching Markov chains, On the point-stabiliser in a transitive permutation group., Isoperimetric Inequalities and Decay of Iterated Kernels for Almost-transitive Markov Chains, Geometric amenability in totally disconnected locally compact groups, On fixing boundary points of transitive hyperbolic graphs, Coarse differentiation of quasi-isometries. I: Spaces not quasi-isometric to Cayley graphs, Topological groups and recurrence of quasi transitive graphs, A survey on graphs with polynomial growth, Analogues of Cayley graphs for topological groups, End-transitive graphs, Highly arc transitive digraphs: reachability, topological groups, A finitary structure theorem for vertex-transitive graphs of polynomial growth, Unnamed Item, Cycle-free partial orders and ends of graphs, Computing Norms of Group-Invariant Transition Operators, Coarse distinguishability of graphs with symmetric growth, Explicit universal minimal constants for polynomial growth of groups, On infinite, cubic, vertex-transitive graphs with applications to totally disconnected, locally compact groups



Cites Work