Linear polymers are represented as chains of hopping reptons and their motion is described as a stochastic process on a lattice. This ad-mittedly crude approximation still catches essential physics of polymer motion, i.e. the universal properties as function of polymer length. More than the static properties, the dynamics depends on the rules of motion. Small changes in the hopping probabilities can result in different univer-sal behavior. In particular the cross-over between Rouse dynamics and reptation is controlled by the types and strength of the hoppings that are allowed. The properties are analyzed using a calculational scheme based on an analogy with one-dimensional spin systems. It leads to accurate data for intermediately long poly...
The twice renormalized Rouse formalism, a refined version of Schweizer's renormalized Rouse treatmen...
This manuscript is structured into two main parts: an introduction on polymer physics and the analys...
Polymeric and biological disordered materials are characterized by unique dynamical features. Althou...
We analyze the motion of individual beads of a polymer chain using a discrete version of De Gennes' ...
ABSTRACT Orientational autocorrelations and cross-correlations are considered for vectors rigidly af...
Using a lattice-based Monte Carlo code for simulating self-avoiding flexible polymers in three dimen...
We present simulation data for the motion of a polymer chain through a regular lattice of impenetrab...
We study phenomenological scaling theories of the polymer dynamics in random media, employing the ex...
We present simulation data for the motion of a polymer chain through a regular lattice of impenetrab...
©1987 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
We perform lattice Monte Carlo simulation using the bond-fluctuation model to examine the conformati...
Using a recently established renormalization group approach [U. Ebert, J. Stat. Phys. (to be publish...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
Features of the renormalized and twice renormalized Rouse models were examined numerically. Based on...
We study the static properties of a semiflexible polymer exposed to a quenched random environment by...
The twice renormalized Rouse formalism, a refined version of Schweizer's renormalized Rouse treatmen...
This manuscript is structured into two main parts: an introduction on polymer physics and the analys...
Polymeric and biological disordered materials are characterized by unique dynamical features. Althou...
We analyze the motion of individual beads of a polymer chain using a discrete version of De Gennes' ...
ABSTRACT Orientational autocorrelations and cross-correlations are considered for vectors rigidly af...
Using a lattice-based Monte Carlo code for simulating self-avoiding flexible polymers in three dimen...
We present simulation data for the motion of a polymer chain through a regular lattice of impenetrab...
We study phenomenological scaling theories of the polymer dynamics in random media, employing the ex...
We present simulation data for the motion of a polymer chain through a regular lattice of impenetrab...
©1987 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
We perform lattice Monte Carlo simulation using the bond-fluctuation model to examine the conformati...
Using a recently established renormalization group approach [U. Ebert, J. Stat. Phys. (to be publish...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
Features of the renormalized and twice renormalized Rouse models were examined numerically. Based on...
We study the static properties of a semiflexible polymer exposed to a quenched random environment by...
The twice renormalized Rouse formalism, a refined version of Schweizer's renormalized Rouse treatmen...
This manuscript is structured into two main parts: an introduction on polymer physics and the analys...
Polymeric and biological disordered materials are characterized by unique dynamical features. Althou...