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The heat semigroup and Brownian motion on strip complexes
Authors:Alexander Bendikov  Laurent Saloff-Coste  Maura Salvatori  Wolfgang Woess
Affiliation:aInstitute of Mathematics, Wroclaw University, Pl. Grundwaldzki 2/4, 50-384 Wroclaw, Poland;bDepartment of Mathematics, Cornell University, Ithaca, NY 14853, USA;cDipartimento di Matematica, Università di Milano, Via Saldini 50, 20133 Milano, Italy;dInstitut für Mathematische Strukturtheorie, Technische Universität Graz, Steyrergasse 30, A-8010 Graz, Austria
Abstract:We introduce the notion of strip complex. A strip complex is a special type of complex obtained by gluing “strips” along their natural boundaries according to a given graph structure. The most familiar example is the one-dimensional complex classically associated with a graph, in which case the strips are simply copies of the unit interval (our setup actually allows for variable edge length). A leading key example is treebolic space, a geometric object studied in a number of recent articles, which arises as a horocyclic product of a metric tree with the hyperbolic plane. In this case, the graph is a regular tree, the strips are [0,1]×R, and each strip is equipped with the hyperbolic geometry of a specific strip in upper half plane. We consider natural families of Dirichlet forms on a general strip complex and show that the associated heat kernels and harmonic functions have very strong smoothness properties. We study questions such as essential self-adjointness of the underlying differential operator acting on a suitable space of smooth functions satisfying a Kirchhoff type condition at points where the strip complex bifurcates. Compatibility with projections that arise from proper group actions is also considered.
Keywords:Strip complex   Dirichlet form   Laplacian   Brownian motion   Heat semigroup   Essential self-adjointness
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