Basic Information Theory, Thermo-limits  for  Network Structures: Basic  Information  Theory for  Random  Networks Based  on  Large Deviation  Principles - Kwabena Doku-amponsah - Books - LAP LAMBERT Academic Publishing - 9783659260346 - November 28, 2012
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Basic Information Theory, Thermo-limits for Network Structures: Basic Information Theory for Random Networks Based on Large Deviation Principles

Kwabena Doku-amponsah

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Basic Information Theory, Thermo-limits for Network Structures: Basic Information Theory for Random Networks Based on Large Deviation Principles

For suitably defined empirical measures of a class of models of sparse coloured random graphs, we prove large deviation principles,with rate functions explicitly expressed in terms of relative entropies, in the weak topology. Also, under fairly general assumption we prove a joint large deviation principle (LDP), for the empirical pair measure and empirical offspring measure of multitype Galton-Watson tree conditioned to have exactly n vertices in the weak topology. Using these large deviation principles, we find asymptotic equipartition properties for hierarchical structures (modelled as multitype Galton-Watson trees) and networked structures (modelled as coloured random graphs). From our LDP results, we compute Thermodynamic limit of physical quantities such as the magnetization, specific heat, internal energy, susceptibility for the ferromagnetic Ising model on a finite random network.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released November 28, 2012
ISBN13 9783659260346
Publishers LAP LAMBERT Academic Publishing
Pages 184
Dimensions 150 × 11 × 226 mm   ·   276 g
Language English