A new formula for the force vs extension relation is derived from the discrete version of the so-called wormlike chain model. This formula correctly fits some recent experimental data on polymer stretching and some numerical simulations with pairwise repulsive potentials. For a more realistic Lennard-Jones potential the agreement with simulations is found to be good when the temperature is above the 0 temperature. For lower temperatures a plateau emerges, as predicted by some recent experimental and theoretical results, and our formula gives good results only in the high force regime. We briefly discuss how other kinds of self-interactions are expected to affect the elasticity of the polymer
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
We present a revised theoretical study of statistical properties of semiflexible filaments. Using a ...
A new formula for the force vs extension relation is derived from the discrete version of the so-cal...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
Open Access. Also selected for Virtual Journal of Biological Physics Research - December 1, 2002We p...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the str...
This thesis provides a picture on the thermo-elastic behavior of polymer molecules with biological r...
This thesis provides a picture on the thermo-elastic behavior of polymer molecules with biological r...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the st...
A semiflexible harmonic chain model with extensible bonds is introduced and applied to the stretchin...
A semiflexible harmonic chain model with extensible bonds is introduced and applied to the stretchin...
The dynamical response of a tethered semiflexible polymer with self-attractive interactions and subj...
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
We present a revised theoretical study of statistical properties of semiflexible filaments. Using a ...
A new formula for the force vs extension relation is derived from the discrete version of the so-cal...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
A new formula for the force vs. extension relation is derived from the discrete version of the so-ca...
Open Access. Also selected for Virtual Journal of Biological Physics Research - December 1, 2002We p...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the str...
This thesis provides a picture on the thermo-elastic behavior of polymer molecules with biological r...
This thesis provides a picture on the thermo-elastic behavior of polymer molecules with biological r...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the st...
A semiflexible harmonic chain model with extensible bonds is introduced and applied to the stretchin...
A semiflexible harmonic chain model with extensible bonds is introduced and applied to the stretchin...
The dynamical response of a tethered semiflexible polymer with self-attractive interactions and subj...
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
How the statistical behavior of semiflexible polymer chains may be affected by force stretching and ...
We present a revised theoretical study of statistical properties of semiflexible filaments. Using a ...