Recent theoretical studies have demonstrated that the behaviour of molecular knots is a sensitive indicator of polymer structure. Here, we use knots to verify the ability of two state-of-the-art algorithms-configuration assembly and hierarchical backmapping-to equilibrate high-molecular-weight (MW) polymer melts. Specifically, we consider melts with MWs equivalent to several tens of entanglement lengths and various chain flexibilities, generated with both strategies. We compare their unknotting probability, unknotting length, knot spectra, and knot length distributions. The excellent agreement between the two independent methods with respect to knotting properties provides an additional strong validation of their ability to equilibrate dens...
The conformational statistics of ring polymers in melts or dense solutions is strongly affected by t...
The statistical mechanics of a long knotted collapsed polymer is determined by a free energy with a ...
The Newtonian energy EN of an object is defined by the energy required to charge a conductive object...
Abstract: Recent theoretical studies have demonstrated that the behaviour of molecular knots is a se...
Kremer-Grest model polymer melts of highly entangled linear chains. Each melt has approximately 500 ...
We present detailed results on the effect of chain branching on the topological properties of entang...
The bond fluctuation method is used to simulate both nonconcatenated entangled and interpenetrating ...
A strategy is developed for generating equilibrated high molecular weight polymer melts described wi...
We combine molecular dynamics simulations and topological analyses (TA) to validate and refine a rec...
We analyse the knotting behaviour of linear polymer melts in two types of soft-core models, namely d...
We review the methodology, algorithmic implementation and performance characteristics of a hierarchi...
We review the methodology, algorithmic implementation and performance characteristics of a hierarchi...
We use numerical simulations to investigate how the chain length and topology of freely fluctuating ...
We employ extensive computer simulations to investigate the conformations and the interactions of ri...
To examine the role of chain entanglements on polymer melt properties, the interaction potential ene...
The conformational statistics of ring polymers in melts or dense solutions is strongly affected by t...
The statistical mechanics of a long knotted collapsed polymer is determined by a free energy with a ...
The Newtonian energy EN of an object is defined by the energy required to charge a conductive object...
Abstract: Recent theoretical studies have demonstrated that the behaviour of molecular knots is a se...
Kremer-Grest model polymer melts of highly entangled linear chains. Each melt has approximately 500 ...
We present detailed results on the effect of chain branching on the topological properties of entang...
The bond fluctuation method is used to simulate both nonconcatenated entangled and interpenetrating ...
A strategy is developed for generating equilibrated high molecular weight polymer melts described wi...
We combine molecular dynamics simulations and topological analyses (TA) to validate and refine a rec...
We analyse the knotting behaviour of linear polymer melts in two types of soft-core models, namely d...
We review the methodology, algorithmic implementation and performance characteristics of a hierarchi...
We review the methodology, algorithmic implementation and performance characteristics of a hierarchi...
We use numerical simulations to investigate how the chain length and topology of freely fluctuating ...
We employ extensive computer simulations to investigate the conformations and the interactions of ri...
To examine the role of chain entanglements on polymer melt properties, the interaction potential ene...
The conformational statistics of ring polymers in melts or dense solutions is strongly affected by t...
The statistical mechanics of a long knotted collapsed polymer is determined by a free energy with a ...
The Newtonian energy EN of an object is defined by the energy required to charge a conductive object...