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- W2093119652 abstract "Recent experimental data for the complete wetting behavior of pure $^{4}mathrm{He}$ and of $^{3}mathrm{He}text{ensuremath{-}}^{4}mathrm{He}$ mixtures exposed to solid substrates show that there is a change of the corresponding film thicknesses $L$ upon approaching thermodynamically the $ensuremath{lambda}$ transition and the tricritical end point, respectively, which can be attributed to critical Casimir forces ${f}_{C}$. We calculate the scaling functions $ensuremath{vartheta}$ of ${f}_{C}$ within models representing the corresponding universality classes. For the mixtures our analysis provides an understanding of the rich behavior of $ensuremath{vartheta}$ deduced from the experimental data and predicts the crossover behavior between the tricritical point and the $ensuremath{lambda}$ transition of pure $^{4}mathrm{He}$ which are connected by a line of critical points. The formation of a ``soft-mode'' phase within the wetting films gives rise to a pronounced maximum of ${f}_{C}$ below the tricritical point as observed experimentally. Near the tricritical point we find logarithmic corrections $ensuremath{sim}{L}^{ensuremath{-}3}(mathrm{ln}phantom{rule{0.2em}{0ex}}L{)}^{1∕2}$ for the leading behavior of $ensuremath{vartheta}$ dominating the contributions from the background dispersion forces." @default.
- W2093119652 created "2016-06-24" @default.
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- W2093119652 date "2007-09-19" @default.
- W2093119652 modified "2023-09-23" @default.
- W2093119652 title "Critical Casimir effect in superfluid wetting films" @default.
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- W2093119652 doi "https://doi.org/10.1103/physreve.76.031124" @default.
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