Smrek Jan, Kremer Kurt
Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.
Phys Rev Lett. 2017 Mar 3;118(9):098002. doi: 10.1103/PhysRevLett.118.098002. Epub 2017 Mar 1.
Recent theoretical studies found that mixtures of active and passive colloidal particles phase separate but only at very high activity ratio. The high value poses serious obstacles for experimental exploration of this phenomenon. Here we show using simulations that when the active and passive particles are polymers, the critical activity ratio decreases with the polymer length. This not only facilitates the experiments but also has implications on the DNA organization in living cell nuclei. Entropy production can be used as an accurate indicator of this nonequilibrium phase transition.
近期的理论研究发现,活性和被动胶体颗粒的混合物会发生相分离,但仅在非常高的活性比下才会如此。这个高值给该现象的实验探索带来了严重障碍。在此,我们通过模拟表明,当活性和被动颗粒为聚合物时,临界活性比会随着聚合物长度的增加而降低。这不仅便于进行实验,还对活细胞核中的DNA组织具有重要意义。熵产生可以用作这种非平衡相变的精确指标。