The configuration space available to randomly cyclized polymers is divided into subspaces accessible to individual knot types. A phantom chain utilized in numerical simulations of polymers can explore all subspaces, whereas a real closed chain forming a figure-of-eight knot, for example, is confined to a subspace corresponding to this knot type only. One can conceptually compare the assembly of configuration spaces of various knot types to a complex foam where individual cells delimit the configuration space available to a given knot type. Neighboring cells in the foam harbor knots that can be converted into each other by just one intersegmental passage. Such a segment-segment passage occurring at the level of knotted configurations corresp...
We use stochastic simulation techniques to sample the conformational space of linear semiflexible po...
Using numerical simulations of pairs of long polymeric chains confined in microscopic cylinders, we ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
The configuration space available to randomly cyclized polymers is divided into subspaces accessible...
AbstractThe configuration space available to randomly cyclized polymers is divided into subspaces ac...
The configuration space available to randomly cyclized polymers is divided into subspaces accessible...
We performed numerical simulations of DNA chains to understand how local geometry of juxtaposed segm...
We performed numerical simulations of DNA chains to understand how local geometry of juxtaposed segm...
Grid diagrams with their relatively simple mathematical formalism provide a convenient way to genera...
Knots are ubiquitous objects and decorative elements that have been studied since antiquity. During ...
Grid diagrams with their relatively simple mathematical formalism provide a convenient way to genera...
This thesis explores different aspects of DNA topology through experimental and numerical techniques...
ABSTRACT: A coarse-grained computational model is used to investigate how the bending rigidity of a ...
The mathematical basis of the hypothesis that type-2 topoisomerases recognize and act at specific DN...
Our group studies topological properties of DNA molecules in solution. We consider highly compacted ...
We use stochastic simulation techniques to sample the conformational space of linear semiflexible po...
Using numerical simulations of pairs of long polymeric chains confined in microscopic cylinders, we ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
The configuration space available to randomly cyclized polymers is divided into subspaces accessible...
AbstractThe configuration space available to randomly cyclized polymers is divided into subspaces ac...
The configuration space available to randomly cyclized polymers is divided into subspaces accessible...
We performed numerical simulations of DNA chains to understand how local geometry of juxtaposed segm...
We performed numerical simulations of DNA chains to understand how local geometry of juxtaposed segm...
Grid diagrams with their relatively simple mathematical formalism provide a convenient way to genera...
Knots are ubiquitous objects and decorative elements that have been studied since antiquity. During ...
Grid diagrams with their relatively simple mathematical formalism provide a convenient way to genera...
This thesis explores different aspects of DNA topology through experimental and numerical techniques...
ABSTRACT: A coarse-grained computational model is used to investigate how the bending rigidity of a ...
The mathematical basis of the hypothesis that type-2 topoisomerases recognize and act at specific DN...
Our group studies topological properties of DNA molecules in solution. We consider highly compacted ...
We use stochastic simulation techniques to sample the conformational space of linear semiflexible po...
Using numerical simulations of pairs of long polymeric chains confined in microscopic cylinders, we ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...