[[abstract]]We apply Monte Carlo simulation method to lattice systems to study the effect of an intrinsic curvature on the mechanical property of a semiflexible biopolymer. We find that when the intrinsic curvature is sufficient large, the extension of a semiflexible biopolymer can undergo a first-order transition at finite temperature. The critical force increases with increasing intrinsic curvature. But the relationship between the critical force and the bending rigidity is structure-dependent. In triangle lattice system, when the intrinsic curvature is smaller than a critical value, the critical force increases with the increasing bending rigidity first, and then decreases with the increasing bending rigidity. But in square lattice syste...
AbstractIn this work we investigate the effect of bending stiffness on a homopolymer inside a spheri...
The nature of the globule-coil transition of surface-confined polymers has been an issue of debate. ...
This work is concerned with the mechanics of periodic structures for biomedical applications. Classi...
[[abstract]]We compare the mechanical properties of two elastic models for a two-dimensional intrins...
We developed a simple model of polymers on a triangular lattice to study the force-induced transitio...
[[abstract]]We study the effect of an intrinsic curvature on the mechanical property of two-dimensio...
[[abstract]]This work explores the ground-state of an elastic model for an intrinsically curved semi...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the st...
We find that the excluded volume interaction (EVI) can accelerate an abrupt transition in extension ...
[[abstract]]We study the behaviors of mean end-to-end distance and specific heat of a two-dimensiona...
©1986 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
We study the effects of the intrinsic curvature (IC), intrinsic twist rate (ITR), anisotropic bendin...
Motivated by recent experimental data on DNA stretching in presence of polyvalent counterions, we st...
We present Monte Carlo simulations of a two-dimensional square lattice semi-flexible polymer model. ...
We use Wang-Landau and replica exchange techniques to study the effect of an increasing stiffness on...
AbstractIn this work we investigate the effect of bending stiffness on a homopolymer inside a spheri...
The nature of the globule-coil transition of surface-confined polymers has been an issue of debate. ...
This work is concerned with the mechanics of periodic structures for biomedical applications. Classi...
[[abstract]]We compare the mechanical properties of two elastic models for a two-dimensional intrins...
We developed a simple model of polymers on a triangular lattice to study the force-induced transitio...
[[abstract]]We study the effect of an intrinsic curvature on the mechanical property of two-dimensio...
[[abstract]]This work explores the ground-state of an elastic model for an intrinsically curved semi...
We present results from three-dimensional off-lattice Monte Carlo simulations to investigate the st...
We find that the excluded volume interaction (EVI) can accelerate an abrupt transition in extension ...
[[abstract]]We study the behaviors of mean end-to-end distance and specific heat of a two-dimensiona...
©1986 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
We study the effects of the intrinsic curvature (IC), intrinsic twist rate (ITR), anisotropic bendin...
Motivated by recent experimental data on DNA stretching in presence of polyvalent counterions, we st...
We present Monte Carlo simulations of a two-dimensional square lattice semi-flexible polymer model. ...
We use Wang-Landau and replica exchange techniques to study the effect of an increasing stiffness on...
AbstractIn this work we investigate the effect of bending stiffness on a homopolymer inside a spheri...
The nature of the globule-coil transition of surface-confined polymers has been an issue of debate. ...
This work is concerned with the mechanics of periodic structures for biomedical applications. Classi...