A Bayesian Interpretation of First-Order Phase Transitions
Author
Abstract
In this work we review the formalism used in describing the thermodynamics
of first-order phase transitions from the point of view of maximum entropy
inference. We present the concepts of transition temperature, latent heat and entropy
difference between phases as emergent from the more fundamental concept of internal
energy, after a statistical inference analysis. We explicitly demonstrate this point of
view by making inferences on a simple game, resulting in the same formalism as in
thermodynamical phase transitions.We show that analogous quantities will inevitably
arise in any problem of inferring the result of a yes/no question, given two different
states of knowledge and information in the form of expectation values. This exposition
may help to clarify the role of these thermodynamical quantities in the context of
different first-order phase transitions such as the case of magnetic Hamiltonians (e.g.
the Potts model).
General note
Artículo de publicación ISI
Patrocinador
FONDECYT grant 1140514.
FONDECYT 11130501.
FONDECYT 1120603. CONICYT PhD fellowship 21140914.
Quote Item
Found Phys (2016) 46:350–359
Collections
The following license files are associated with this item: