Hallatschek Oskar, Frey Erwin, Kroy Klaus
Hahn-Meitner Institut, Glienicker Strasse 100, 14109 Berlin, Germany.
Phys Rev Lett. 2005 Feb 25;94(7):077804. doi: 10.1103/PhysRevLett.94.077804.
We present a unified theory for the longitudinal dynamic response of a stiff polymer in solution to various external perturbations (mechanical excitations, hydrodynamic flows, electrical fields, temperature quenches, etc.) that can be represented as sudden changes of ambient/boundary conditions. The theory relies on a comprehensive analysis of the nonequilibrium propagation and relaxation of backbone stresses in a wormlike chain. We recover and substantially extend previous results based on heuristic arguments. New experimental implications are pointed out.
我们提出了一种统一理论,用于描述刚性聚合物在溶液中对各种外部扰动(机械激发、流体动力流、电场、温度猝灭等)的纵向动态响应,这些扰动可表示为环境/边界条件的突然变化。该理论基于对蠕虫状链中主链应力的非平衡传播和弛豫的全面分析。我们基于启发式论证恢复并大幅扩展了先前的结果。指出了新的实验意义。