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Vladimir V. Yanovsky

Publications and source records attributed to Vladimir V. Yanovsky.

5 recordsLinked to original sources

Surface tension of monoatomic liquids after relaxation: the main energy contributions

We consider the atomistic origin and the main mechanisms determining the energy of a liquid interface after relaxation. A simple theory is constructed for the monatomic densely packed liquids that allows calculation of the surface tension coefficients based on the interatomic potential parameters, without fitting coefficients. Considered are the potential energies of both < > and stretched bonds between surface atoms. The later contribution is found to be from $20 \%$ to $45 \%$, with an average stretching of the first layer in the range of $7 \% - 14 \%$. The equality of the unit tension force and the unit surface energy is shown. The calculated surface tension coefficients relate to the experimental values as $1.0 - 1.3$ for the ten $fcc$ substances considered. For twenty $bcc$ substances, this range is $0.65 - 1.35$. The increase of density of the second atomic layer is predicted, due to its influence on the coordination number of surface atoms. For a convex surface, increase in the surface tension coefficient with increase in curvature is predicted.

cond-mat.stat-mech

Properties of nano-islands formation in nonequilibrium reaction-diffusion systems with memory effects

We study dynamics of pattern formation in systems belonging to class of reaction-Cattaneo models including persistent diffusion (memory effects of the diffusion flux). It was shown that due to the memory effects pattern seletion process are realized. We have found that oscillatory behavior of the radius of the adsorbate islands is governed by finite propagation speed. It is shown that stabilization of nano-patterns in such models is possible only by nonequilibrium chemical reactions. Oscillatory dynamics of pattern formation is studied in details by numerical simulations.

cond-mat.stat-mech

Large-scale instability in hydrodynamics with stable temperature stratification driven by small-scale helical force

In this work we consider the effect of a small-scale helical driving force on fluid with a stable temperature gradient with Reynolds number Re<<1. At first glance, this system does not appear to have any instability. However, we show that large-scale vortex instability appears in fluid despite its stable stratification. In the non-linear mode, this instability gets saturated and gives a large number of stationary spiral vortex structures. Among these structures there is a stationary helical soliton and a kink of a new type. The theory is built on the rigorous asymptotical method of multi-scale development.

physics.flu-dyn

Geometry and dynamics of billiards in symmetric phase space

The billiard problem of statistical physics is considered in a new geometric approach with a symmetric phase space. The structure and topological features of typical billiard phase portrait are defined. The connection between geometric, dynamic and statistic properties of smooth billiard is established. Other directions of the theory on development are pointed out.

nlin.CD

Helicity in Classical Electrodynamics and Turbulence

For the electromagnetic fields, hydrodynamic media and turbulent flows we consider the relationship between a topological characteristic of vector fields known as helicity and the angular momentum of the medium, and discuss, in this respect, the problem of helicity and angular momentum transfer from the electromagnetic field to a medium.

hep-th