Sain Anirban, Wortis Michael
Physics Department, McGill University, Rutherford Building, Montreal, Quebec H3A 2T8, Canada.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Sep;70(3 Pt 1):031102. doi: 10.1103/PhysRevE.70.031102. Epub 2004 Sep 3.
When a trapped particle is subject to the tension of a massive frictional spring (the "tether"), the escape rate increases due to a lowering of the escape barrier. However, in addition, the escape-rate prefactor is influenced by the mass and drag contributed by the spring. We solve the full Kramers escape problem for the coupled system using a technique attributed to Langer. The prefactor in the escape rate is significantly modified by the spring parameters even in the strong-damping limit. The biophysical relevance of this problem is briefly discussed.
当一个被困粒子受到一个巨大的摩擦弹簧(“系链”)的拉力时,由于逃逸势垒的降低,逃逸率会增加。然而,此外,逃逸率的前置因子还受到弹簧的质量和阻力的影响。我们使用一种归功于兰格的技术来求解耦合系统的完整克莱默斯逃逸问题。即使在强阻尼极限下,弹簧参数也会显著改变逃逸率的前置因子。本文简要讨论了这个问题的生物物理相关性。