We investigate the influence of knotting and chirality on the shape of knotted polygons forming trefoil knots compared to unknotted polygons by aligning independent configurations along their principal inertial axes. While for six edge polygons forming trefoil knots the chiral knotted structure is revealed in the isodensity profiles, the distinct chiral signature of the trefoil is significantly diminished with 24 edges. We observe that as the number of edges in the polygons increases, the cumulative shapes of trefoil knots progressively approach the cumulative shapes for unknotted polygons
We use numerical simulations to investigate how the chain length and topology of freely fluctuating ...
The knotting in a lattice polygon model of ring polymers is examined when a stretching force is a...
The average shape of the trefoil knot tied on a floppy, hard rope subject to thermal fluctuations ha...
We simulate freely jointed chains to investigate how knotting affects the overall shapes of freely f...
We simulate freely jointed chains to investigate how knotting affects the overall shapes of freely f...
Momentary configurations of long polymers at thermal equilibrium usually deviate from spherical symm...
Momentary configurations of long polymers at thermal equilibrium usually deviate from spherical symm...
Knots appear frequently in semiflexible (bio)polymers, including double-stranded DNA, and their pres...
<p>Motifs produced by the combination of crossovers in the crystal structure of the decamer d(CCGCCG...
Inspired by how certain proteins "sense" knots and entanglements in DNA molecules, here we ask if th...
Long polymers in solution frequently adopt knotted configurations. To understand the physical proper...
KNOTS are usually categorized in terms of topological properties that are invariant under changes in...
Previous work on radius of gyration and average crossing number has demonstrated that polymers with ...
The role of the topology and its relation with the geometry of biopolymers under different physic...
The equilibrium shapes of prime and composite knots were studied. It was showed that the topological...
We use numerical simulations to investigate how the chain length and topology of freely fluctuating ...
The knotting in a lattice polygon model of ring polymers is examined when a stretching force is a...
The average shape of the trefoil knot tied on a floppy, hard rope subject to thermal fluctuations ha...
We simulate freely jointed chains to investigate how knotting affects the overall shapes of freely f...
We simulate freely jointed chains to investigate how knotting affects the overall shapes of freely f...
Momentary configurations of long polymers at thermal equilibrium usually deviate from spherical symm...
Momentary configurations of long polymers at thermal equilibrium usually deviate from spherical symm...
Knots appear frequently in semiflexible (bio)polymers, including double-stranded DNA, and their pres...
<p>Motifs produced by the combination of crossovers in the crystal structure of the decamer d(CCGCCG...
Inspired by how certain proteins "sense" knots and entanglements in DNA molecules, here we ask if th...
Long polymers in solution frequently adopt knotted configurations. To understand the physical proper...
KNOTS are usually categorized in terms of topological properties that are invariant under changes in...
Previous work on radius of gyration and average crossing number has demonstrated that polymers with ...
The role of the topology and its relation with the geometry of biopolymers under different physic...
The equilibrium shapes of prime and composite knots were studied. It was showed that the topological...
We use numerical simulations to investigate how the chain length and topology of freely fluctuating ...
The knotting in a lattice polygon model of ring polymers is examined when a stretching force is a...
The average shape of the trefoil knot tied on a floppy, hard rope subject to thermal fluctuations ha...