We study the dynamics of a double-stranded DNA (dsDNA) segment, as a semiflexible polymer, in a shear flow, the strength of which is customarily expressed in terms of the dimensionless Weissenberg number Wi. Polymer chains in shear flows are well known to undergo tumbling motion. When the chain lengths are much smaller than the persistence length, one expects a (semiflexible) chain to tumble as a rigid rod. At low Wi, a polymer segment shorter than the persistence length does indeed tumble as a rigid rod. However, for higher Wi the chain does not tumble as a rigid rod, even if the polymer segment is shorter than the persistence length. In particular, from time to time the polymer segment may assume a buckled form, a phenomenon commonly know...
We study the base pairing dynamics of DNA with repetitive sequences where local strand slippage can ...
We have investigated the dynamics of dilute (1025C*) and semidilute ( < 6C*) DNA solutions both i...
ABSTRACT: We present the direct visualizations of single, entangled DNA polymers in three flow exper...
We study the dynamics of a double-stranded DNA (dsDNA) segment, as a semiflexible polymer, in a shea...
ABSTRACT: The conformational changes imparted on single, flexible DNA polymers by a steady, simple s...
We discuss the stretching of tethered chains subject to a shear flow. Fluorescence microscopy meas...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
Polymers exposed to shear flow exhibit a remarkably rich tumbling dynamics. While rigid rods rotate ...
Recent experimental measurements of the static and dynamic properties of single fluorescently labele...
Molecular conformations of individual polymers during flow through porous media are directly observe...
This thesis aims to bridge the macroscopic properties and microscopic behavior of macromolecules in ...
We present the results of Brownian dynamics simulations of a series of different polymer models whic...
Entangled aqueous DNA solutions are ideal as a model system to examine nonlinear flow features inclu...
We study the configuration and wall collision process of a wall tethered polymer in shear flow using...
Solutions of flexible polymer chains with harmonic bonds undergoing rectilinear flow in slit pores a...
We study the base pairing dynamics of DNA with repetitive sequences where local strand slippage can ...
We have investigated the dynamics of dilute (1025C*) and semidilute ( < 6C*) DNA solutions both i...
ABSTRACT: We present the direct visualizations of single, entangled DNA polymers in three flow exper...
We study the dynamics of a double-stranded DNA (dsDNA) segment, as a semiflexible polymer, in a shea...
ABSTRACT: The conformational changes imparted on single, flexible DNA polymers by a steady, simple s...
We discuss the stretching of tethered chains subject to a shear flow. Fluorescence microscopy meas...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
Polymers exposed to shear flow exhibit a remarkably rich tumbling dynamics. While rigid rods rotate ...
Recent experimental measurements of the static and dynamic properties of single fluorescently labele...
Molecular conformations of individual polymers during flow through porous media are directly observe...
This thesis aims to bridge the macroscopic properties and microscopic behavior of macromolecules in ...
We present the results of Brownian dynamics simulations of a series of different polymer models whic...
Entangled aqueous DNA solutions are ideal as a model system to examine nonlinear flow features inclu...
We study the configuration and wall collision process of a wall tethered polymer in shear flow using...
Solutions of flexible polymer chains with harmonic bonds undergoing rectilinear flow in slit pores a...
We study the base pairing dynamics of DNA with repetitive sequences where local strand slippage can ...
We have investigated the dynamics of dilute (1025C*) and semidilute ( < 6C*) DNA solutions both i...
ABSTRACT: We present the direct visualizations of single, entangled DNA polymers in three flow exper...