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The influence of van der Waals forces on the decay of liquid solutions of helium isotopes is studied theoretically and the conditions for the phase co-existence in a confined geometry are investigated. As the models to account the influence of van der Waals forces on the helium isotope solution the gap between two parallel planes and the cylindrical channel are considered. For each of the models we calculated the concentration profile inside the channel depending on the van der Waals constant, the initial solution concentration and the size of the channel. The phase diagrams of liquid solutions are constructed. The obtained liquid mixture phase diagrams are compared with the “bulk” phase diagram. A rather good agreement between theoretical and experimental phase diagrams is obtained for liquid helium mixture in aerogel.

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Liquid 3 He– 4 He mixture phase diagram in restricted geometry

Degtiarov, I. A.; Sokolov, S. S.
Low Temperature Physics , Volume 38 (1)
American Institute of PhysicsJan 1, 2012

More Info

  • Publisher American Institute of Physics
  • Copyright Copyright © 2012 American Institute of Physics
  • ISSN 1063-777X
  • eISSN 1090-6517
  • D.O.I. 10.1063/1.3677233
  • Publisher site Get PDF  

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