Total curvature and total torsion of knotted polymers


Autoria(s): Plunkett P.; Piatek M.; Dobay A.; Kern J. C.; Millett K. C.; Stasiak A.; Rawdon E. J.
Data(s)

2007

Resumo

Previous work on radius of gyration and average crossing number has demonstrated that polymers with fixed topology show a different scaling behavior with respect to these characteristics than polymers with unrestricted topology. Using numerical simulations, we show here that the difference in the scaling behavior between polymers with restricted and unrestricted topology also applies to the total curvature and total torsion. For each knot type, the equilibrium length with respect to a given spatial characteristic is the number of edges at which the value of the characteristic is the same as the average for all polygons. This number appears to be correlated to physical properties of macromolecules, for example gel mobility as measured by the separation between distinct knot types. We also find that, on average, closed polymers require slightly more total curvature and slightly less total torsion than open polymers with the corresponding number of monomers.

Identificador

http://serval.unil.ch/?id=serval:BIB_7B723CC35187

isbn:0024-9297

doi:10.1021/ma0627673

isiid:000246280600050

Idioma(s)

en

Fonte

Macromolecules, vol. 40, no. 10, pp. 3860-3867

Palavras-Chave #; SCALING BEHAVIOR; RANDOM POLYGONS; DNA
Tipo

info:eu-repo/semantics/article

article