10 pagesMacromolecular liquids display short-time anomalous behaviors in disagreement with conventional single-molecule mean-field theories. In this study, we analyze the behavior of the simplest but most realistic macromolecular system that displays anomalous dynamics, i.e., a melt of short homopolymer chains, starting from molecular dynamics simulation trajectories. Our study sheds some light on the microscopic molecular mechanisms responsible for the observed anomalous behavior. The relevance of the correlation hole, a unique property of polymer liquids, in relation to the observed subdiffusive dynamics, naturally emerges from the analysis of the van Hove distribution functions and other properties
The random walk of a bonded monomer in a polymer melt is anisotropic due to local order and bond con...
Investigations on the diffusion of small molecules or particles in polymeric materials are important...
We use molecular dynamics simulations of the Kremer–Grest (KG) bead–spring model of polymer chains o...
Macromolecular liquids display short-time anomalous behaviors in disagreement with conventional sing...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
Dense liquids above their glass transition exhibit spatially heterogeneous dynamics (SHD) in which r...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
Spurred by an experimental controversy in the literature, we investigate the end-monomer dynamics of...
In this paper, we investigate the microscopic dynamics of a polymer of length $N$ translocating thro...
Spurred by an experimental controversy in the literature, we investigate the end-monomer dynamics of...
We analyze dynamical heterogeneities in a simulated “bead-spring” model of a nonentangled, supercool...
The random walk of a bonded monomer in a polymer melt is anisotropic due to local order and bond con...
The random walk of a bonded monomer in a polymer melt is anisotropic due to local order and bond con...
Investigations on the diffusion of small molecules or particles in polymeric materials are important...
We use molecular dynamics simulations of the Kremer–Grest (KG) bead–spring model of polymer chains o...
Macromolecular liquids display short-time anomalous behaviors in disagreement with conventional sing...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
Dense liquids above their glass transition exhibit spatially heterogeneous dynamics (SHD) in which r...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
For more than half a century the theoretical landscape for single chain dynamics for dense polymeric...
Spurred by an experimental controversy in the literature, we investigate the end-monomer dynamics of...
In this paper, we investigate the microscopic dynamics of a polymer of length $N$ translocating thro...
Spurred by an experimental controversy in the literature, we investigate the end-monomer dynamics of...
We analyze dynamical heterogeneities in a simulated “bead-spring” model of a nonentangled, supercool...
The random walk of a bonded monomer in a polymer melt is anisotropic due to local order and bond con...
The random walk of a bonded monomer in a polymer melt is anisotropic due to local order and bond con...
Investigations on the diffusion of small molecules or particles in polymeric materials are important...
We use molecular dynamics simulations of the Kremer–Grest (KG) bead–spring model of polymer chains o...