activity
20002005
most citedOn the (hydrodynamic) memory in the theory of Brownian motion

14 citations · 23 across the 6 of their papers we have counts for

collaborators
Showing cond-mat.softShow all

9 papers · 1 filter

cond-mat.soft20052 cited

The dynamics of polymers in solution with hydrodynamic memory

V. Lisy, J. Tothova, B. Brutovsky +1

The theory of the dynamics of polymers in solution is developed coming from the hydrodynamic theory of the Brownian motion (BM) and the Rouse-Zimm (RZ) model. It is shown that the…

cond-mat.soft20053 cited

Monomer motion in single- and double-stranded DNA coils

J. Tothova, B. Brutovsky, V. Lisy

The dynamics of flexible polymers in dilute solution is usually described in terms of the pure Rouse or Zimm bead-spring models assuming continuous distribution of the internal rel…

cond-mat.soft2005

The Rouse-Zimm-Brinkman theory of the dynamics of polymers in dilute solutions

V. Lisy, J. Tothova, A. V. Zatovsky

We propose a theory of the dynamics of polymers in dilute solution, in which the popular Zimm and Rouse models are limiting cases of infinitely large and small draining parameter.…

cond-mat.soft20044 cited

On two direct methods for measurement of interfacial tension at microdroplet surfaces

J. Tothova, M. Richterova, V. Lisy

In the presence of surfactants, the interfacial tension (IFT) of microscopic droplets differs significantly from IFT of macroscopic drops for the same surfactant solutions. As a re…

cond-mat.soft2004

On a discussion about the determination of surface characteristics of microemulsion droplets from static and dynamic scattering experiments

V. Lisy

The interpretation of static and dynamic scattering experiments on droplet microemulsions is discussed. We review the arguments given in our previous papers that call into question…

cond-mat.soft2001

Polarizability of microemulsion droplets

M. Richterova, V. Lisy

Spheroidal fluid droplets immersed in another fluid and thermally fluctuating in the shape are considered. The polarizability of the droplet is evaluated up to the second order in…