Elastic properties of compressed cryocrystals in a deformed atom model

9th International Conference on Cryocrystals and Quantum Crystals Odessa, Ukraine, September 2–8, 2012 (final part)

Автор(и)

  • Ie.Ie. Gorbenko Lugansk Taras Shevchenko National University, Oboronna Str., Lugansk 91011, Ukraine
  • I.V. Zhikharev Lugansk Taras Shevchenko National University, Oboronna Str., Lugansk 91011, Ukraine
  • E.P. Troitskaya Donetsk A.A. Galkin Physics and Technology Institute of the National Academy of Sciences of Ukraine 72 R. Luxemburg Str., Donetsk 83114, Ukraine
  • Val.V. Chabanenko Donetsk A.A. Galkin Physics and Technology Institute of the National Academy of Sciences of Ukraine 72 R. Luxemburg Str., Donetsk 83114, Ukraine
  • E.A. Pilipenko Donetsk A.A. Galkin Physics and Technology Institute of the National Academy of Sciences of Ukraine 72 R. Luxemburg Str., Donetsk 83114, Ukraine

DOI:

https://doi.org/10.1063/1.4811262

Ключові слова:

rare-gas crystals, high pressure, quadrupole deformation, elastic properties, Cauchy relation.

Анотація

A model with deformed atom shells is built to investigate the elastic properties of rare-gas crystals Ne and Kr under high pressure. It is shown that the observed deviation from the Cauchy relation δ cannot be adequately reproduced with taking into account of only the many-body interaction. The individual pressure dependence δ of is a result of competition of the many-body interaction and the quadrupole interaction associated with the quadrupole-type deformation of electron shells of the atoms during the displacements of the nuclei. Each kind of interaction makes a strongly pressure dependent contribution to δ . In the case of Ne and Kr, contributions of these interactions are compensated to the good precision, providing δ being almost constant against pressure.

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Опубліковано

2013-04-15

Як цитувати

(1)
Gorbenko, I.; Zhikharev, I.; Troitskaya, E.; Chabanenko, V.; Pilipenko, E. Elastic Properties of Compressed Cryocrystals in a Deformed Atom Model: 9th International Conference on Cryocrystals and Quantum Crystals Odessa, Ukraine, September 2–8, 2012 (final Part). Fiz. Nizk. Temp. 2013, 39, 716-721.

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