Please use this identifier to cite or link to this item: http://mx.ogasa.org.ua/handle/123456789/5552
Title: Theory of Isotope Effect in the Thermodynamics of “Classical” Crystals
Authors: Bondarev, V.N.
Taraswvich, D.V.
Keywords: fcc–hcp phase
the isotope effect
noble gases
Issue Date: 2008
Publisher: Physics of the Solid State
Series/Report no.: Vol. 50(7);p.1333-1336
Abstract: Based on general expressions for quantum contributions to the free energy of a statistical system, an approach is developed making it possible to carry out a complete theoretical analysis of the equilibrium thermodynamic characteristics of argon-type crystals as a function of the isotopic mass. The theory is based on independently calculated (in fact, without fitting parameters) one-particle and two-particle distribution functions of the classical crystal and permits one to quantitatively describe the data on the lattice parameters of isotope crystals obtained from numerical experiments. It is pointed out that real experiments are needed to study the isotope effect in crystals of noble gases, especially in view of the fact that, according to the literature data, xenon undergoes an fcc–hcp phase transition under increased pressure.
URI: http://mx.ogasa.org.ua/handle/123456789/5552
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