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Infinite Shannon entropy

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arxiv 1212.5630 v2 pith:QFKUG3I3 submitted 2012-12-21 cond-mat.stat-mech math-phmath.MPquant-ph

Infinite Shannon entropy

classification cond-mat.stat-mech math-phmath.MPquant-ph
keywords entropyinfiniteshannonlargesimplesomeconditionsentropies
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Even if a probability distribution is properly normalizable, its associated Shannon (or von Neumann) entropy can easily be infinite. We carefully analyze conditions under which this phenomenon can occur. Roughly speaking, this happens when arbitrarily small amounts of probability are dispersed into an infinite number of states; we shall quantify this observation and make it precise. We develop several particularly simple, elementary, and useful bounds, and also provide some asymptotic estimates, leading to necessary and sufficient conditions for the occurrence of infinite Shannon entropy. We go to some effort to keep technical computations as simple and conceptually clear as possible. In particular, we shall see that large entropies cannot be localized in state space; large entropies can only be supported on an exponentially large number of states. We are for the time being interested in single-channel Shannon entropy in the information theoretic sense, not entropy in a stochastic field theory or QFT defined over some configuration space, on the grounds that this simple problem is a necessary precursor to understanding infinite entropy in a field theoretic context.

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