中文

Long Range Bond-Bond Correlations in Dense Polymer Solutions

软凝聚态物质 2009-11-10 v2

摘要

The scaling of the bond-bond correlation function C(s)C(s) along linear polymer chains is investigated with respect to the curvilinear distance, ss, along the flexible chain and the monomer density, ρ\rho, via Monte Carlo and molecular dynamics simulations. % Surprisingly, the correlations in dense three dimensional solutions are found to decay with a power law C(s)sωC(s) \sim s^{-\omega} with ω=3/2\omega=3/2 and the exponential behavior commonly assumed is clearly ruled out for long chains. % In semidilute solutions, the density dependent scaling of C(s)gω0(s/g)ωC(s) \approx g^{-\omega_0} (s/g)^{-\omega} with ω0=22ν=0.824\omega_0=2-2\nu=0.824 (ν=0.588\nu=0.588 being Flory's exponent) is set by the number of monomers g(ρ)g(\rho) contained in an excluded volume blob of size ξ\xi. % Our computational findings compare well with simple scaling arguments and perturbation calculation. The power-law behavior is due to self-interactions of chains on distances sgs \gg g caused by the connectivity of chains and the incompressibility of the melt. %

关键词

引用

@article{arxiv.cond-mat/0404457,
  title  = {Long Range Bond-Bond Correlations in Dense Polymer Solutions},
  author = {J. P. Wittmer and H. Meyer and J. Baschnagel and A. Johner and S. Obukhov and L. Mattioni and M. Mueller and A. N. Semenov},
  journal= {arXiv preprint arXiv:cond-mat/0404457},
  year   = {2009}
}

备注

4 pages, 4 figures