activity
20002005
most citedStiffness of polymer chains

1 citations · 6 across the 13 of their papers we have counts for

collaborators

27 papers

cond-mat.stat-mech2005

Scattering function for a self-avoiding polymer chain

A. D. Drozdov

An explicit expression is derived for the scattering function of a self-avoiding polymer chain in a -dimensional space. The effect of strength of segment interactions on the sha…

cond-mat.stat-mech20041 cited

Non-entropic theory of rubber elasticity: flexible chains with weak excluded-volume interactions

A. D. Drozdov

Strain energy density is calculated for a network of flexible chains with weak excluded-volume interactions (whose energy is small compared with thermal energy). Constitutive equat…

cond-mat.stat-mech2004

Non-entropic theory of rubber elasticity: flexible chains grafted on a rigid surface

A. D. Drozdov

The elastic response is studied of a single flexible chain grafted on a rigid plane and an ensemble of non-interacting tethered chains. It is demonstrated that the entropic theory…

cond-mat.stat-mech20041 cited

Stiffness of polymer chains

A. D. Drozdov

A formula is derived for stiffness of a polymer chain in terms of the distribution function of end-to-end vectors. This relationship is applied to calculate the stiffness of Gaussi…

cond-mat.stat-mech2004

The end-to-end distribution function for a flexible chain with weak excluded-volume interactions

A. D. Drozdov

An explicit expression is derived for the distribution function of end-to-end vectors and for the mean square end-to-end distance of a flexible chain with excluded-volume interacti…

cond-mat.mtrl-sci20041 cited

Networks of self-avoiding chains and Ogden-type constitutive equations for elastomers

A. D. Drozdov, M. Gottlieb

An expression is derived for the strain energy of a polymer chain under an arbitrary three-dimensional deformation with finite strains. For a Gaussian chain, this expression is red…