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Geometrical approach to the thermodynamical theory of phase transitions of the second kind

✍ Scribed by A.K. Kanyuka; V.S. Glukhov


Publisher
Elsevier Science
Year
1996
Tongue
English
Weight
664 KB
Volume
230
Category
Article
ISSN
0378-4371

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✦ Synopsis


A geometrical approach to the phenomenological theory of phase transitions of the second kind at constant pressure P and variable temperature T is proposed. Equilibrium states of a system at zero external field and fixed P and T are described by points in three-dimensional space with coordinates t/, the order parameter, T, the temperature and q~, the thermodynamic potential. These points form the so-called zero field curve in the (q, T, ~b) space. Its branch point coincides with the critical point of the system. The small parameter of the theory (the distance from the critical point along the zero-field curve) is shown to be more convenient than the small parameter of the Landau theory. It is emphasized that no explicit functional dependency of on r/and T is imposed.

It is shown that using (t/, T, q~) space one cannot overcome well-known difficulties of the Landau theory of phase transitions and describe non-analytical behavior of real systems in the vicinity of the critical point. This becomes possible only if one increases the dimensionality of the space, taking into account the dependency of the thermodynamic potential not only on t/ and T, but also on near (local) order parameters 2i. In this case under certain conditions it is possible to describe anomalous increase of the specific heat when the temperature of the system approaches the critical point from above as well as from below the critical temperature To.


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✍ A.K. Kanyuka; V.S. Glukhov πŸ“‚ Article πŸ“… 1996 πŸ› Elsevier Science 🌐 English βš– 689 KB

The geometrical approach to the thermodynamical theory of phase transitions of the second kind is further developed for the case when the first non-vanishing derivatives of the Gibbs potential w.r.t, the order parameter and w.r.t, the "critical" correlation parameter are of the fourth order. The cri