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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2009 Volume 35, Issue 20, Pages 1–9 (Mi pjtf10060)

This article is cited in 6 papers

Effect of phonon anharmonicity on the thermal and elastic properties of stabilized $\delta$-plutonium

A. N. Filanovicha, A. A. Povznera, V. Yu. Bodryakova, Yu. Yu. Tsiovkinb, V. V. Dremovc

a Ural State Technical University, Ekaterinburg
b Institute of Metal Physics, Ural Branch of the Russian Academy of Sciences, Ekaterinburg
c Russian Federal Nuclear Center E. I. Zababakhin All-Russian Scientific Research Institute of Technical Physics, Snezhinsk

Abstract: The Debye temperature, bulk modulus, density, and molar heat capacity of a Pu$_{0.95}$Al$_{0.05}$ alloy have been calculated as functions of the temperature using a self-consistent thermodynamic model developed according to a quasi-classical approach that takes into account the effect of phonon anharmonicity on the acoustic and thermodynamic properties of metals. The results of self-consistent numerical simulation of the thermal and elastic properties are compared to the available experimental data and theoretical results obtained using alternative approaches. It is established that the phonon anharmonicity plays a significant role in the formation of elastic and thermal properties of the system under consideration.

Received: 23.04.2009


 English version:
Technical Physics Letters, 2009, 35:10, 929–932

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