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Vassil M Vassilev

Publications and source records attributed to Vassil M Vassilev.

2 recordsLinked to original sources

Exact solution for the order parameter profiles and the Casimir force in $^4$He superfluid films in an effective field theory

We present an analytical solution of an effective field theory which, in one of its formulations, is equivalent to the Ginzburg's $Ψ$-theory for the behavior of the Casimir force in a film of $^4$He in equilibrium with its vapor near the superfluid transition point. We consider three versions of the theory, depending on the way one determines its parameters from the experimental measurements. We present exact results for the behavior of the order parameter profiles and of the Casimir force within this theory, which is characterized by $d=3$, $ν=2/3$ and $β=1/3$, where $d$ is the bulk spatial dimension and $ν$ and $β$ are the usual critical exponents. In addition, we revisit relevant experiments \cite{GC99} and \cite{GSGC2006} in terms of our findings. We find reasonably good agreement between our theoretical predictions and the experimental data. We demonstrate analytically that our calculated force is attractive. The position of the extremum is predicted to be at $x_{\rm min}=π$, with $x=(L/ξ_0)(T/T_λ-1)^{1/ν}$, which value effectively coincides with the experimental finding $x_{\rm min}=3.2\pm 0.18$. Here $L$ is the thickness of the film, $T_λ$ is the bulk critical temperature and $ξ_0$ is the correlation length amplitude of the system for temperature $T>T_λ$. The theoretically predicted position of the minimum does not depend on the one adjustable parameter, $M$, entering the theory.

cond-mat.stat-mech↗

Exact results for the behavior of the thermodynamic Casimir force in a model with a strong adsorption

When massless excitations are limited or modified by the presence of material bodies one observes a force acting between them generally called Casimir force. Such excitations are present in any fluid system close to its true bulk critical point. We derive exact analytical results for both the temperature and external ordering field behavior of the thermodynamic Casimir force within the mean-field Ginzburg-Landau Ising type model of a simple fluid or binary liquid mixture. We investigate the case when under a film geometry the boundaries of the system exhibit strong adsorption onto one of the phases (components) of the system. We present analytical and numerical results for the (temperature-field) relief map of the force in both the critical region of the film close to its finite-size or bulk critical points as well as in the capillary condensation regime below but close to the finite-size critical point.

cond-mat.stat-mech↗