The breakdown of dynamical scaling for a dilute polymer solution in two dimensions has been suggested by Shannon and Choy [Phys. Rev. Lett. 79, 1455 (1997)]. However, we show here through extensive computer simulations that dynamical scaling holds when the relevant dynamical quantities are properly extracted from finite systems. To verify dynamical scaling, we present results based on mesoscopic simulations in two dimensions for a polymer chain in a good solvent with full hydrodynamic interactions. We also present analytical arguments for the size dependence of the diffusion coefficient and find excellent agreement with the present large-scale simulations.Peer reviewe
Structure and Dynamics of dilute two-dimensional (2D) ring polymer solutions are investigated by usi...
We determine the scaling exponents of polymer translocation (PT) through a nanopore by extensive com...
The large scale spatial correlations in a dilute solution of long chain molecules are dominated by e...
The breakdown of dynamical scaling for a dilute polymer solution in two dimensions has been suggeste...
We consider the dynamical scaling of a single polymer chain in good solvent. In the case of two-dime...
We performed a series of simulations for a linear polymer chain in a solvent using dissipative parti...
We analyse the dynamical properties of dilute Polymer solutions by using scaling arguments. To this ...
We discuss the hydrodynamic radius R-H of polymer chains in good solvent, and show that the leading ...
Journal articleThe dynamics of a polymer chain confined in a soft 2D slit formed by two immiscible l...
A theoretical model, recently introduced to describe the dynamics of reversibly breakable polymer ch...
We have used a novel Monte Carlo method to compute the gyration radius Rg and the hydrodynamic radi...
The dynamics of a polymer chain confined in a soft 2D slit formed by two immiscible liquids is studi...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
Previous theories of dilute polymer solutions have failed to distinguish clearly between two very di...
We study the dynamics of driven polymer translocation using both molecular dynamics (MD) simulations...
Structure and Dynamics of dilute two-dimensional (2D) ring polymer solutions are investigated by usi...
We determine the scaling exponents of polymer translocation (PT) through a nanopore by extensive com...
The large scale spatial correlations in a dilute solution of long chain molecules are dominated by e...
The breakdown of dynamical scaling for a dilute polymer solution in two dimensions has been suggeste...
We consider the dynamical scaling of a single polymer chain in good solvent. In the case of two-dime...
We performed a series of simulations for a linear polymer chain in a solvent using dissipative parti...
We analyse the dynamical properties of dilute Polymer solutions by using scaling arguments. To this ...
We discuss the hydrodynamic radius R-H of polymer chains in good solvent, and show that the leading ...
Journal articleThe dynamics of a polymer chain confined in a soft 2D slit formed by two immiscible l...
A theoretical model, recently introduced to describe the dynamics of reversibly breakable polymer ch...
We have used a novel Monte Carlo method to compute the gyration radius Rg and the hydrodynamic radi...
The dynamics of a polymer chain confined in a soft 2D slit formed by two immiscible liquids is studi...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
Previous theories of dilute polymer solutions have failed to distinguish clearly between two very di...
We study the dynamics of driven polymer translocation using both molecular dynamics (MD) simulations...
Structure and Dynamics of dilute two-dimensional (2D) ring polymer solutions are investigated by usi...
We determine the scaling exponents of polymer translocation (PT) through a nanopore by extensive com...
The large scale spatial correlations in a dilute solution of long chain molecules are dominated by e...