Cagnetta Francesco, Škultéty Viktor, Evans Martin R, Marenduzzo Davide
SUPA, School of Physics and Astronomy, The University of Edinburgh, Edinburgh, EH9 3FD, Scotland, United Kingdom.
Phys Rev E. 2022 Jan;105(1):L012604. doi: 10.1103/PhysRevE.105.L012604.
We put forward a general field theory for nearly flat fluid membranes with embedded activators and analyze their critical properties using renormalization group techniques. Depending on the membrane-activator coupling, we find a crossover between acoustic and diffusive scaling regimes, with mean-field dynamical critical exponents z=1 and 2, respectively. We argue that the acoustic scaling, which is exact in all spatial dimensions, leads to an early-time behavior, which is representative of the spatiotemporal patterns observed at the leading edge of motile cells, such as oscillations superposed on the growth of the membrane width. In the case of mean-field diffusive scaling, one-loop corrections to the mean-field exponents reveal universal behavior distinct from the Kardar-Parisi-Zhang scaling of passive interfaces and signs of strong-coupling behavior.
我们提出了一种适用于具有嵌入式激活剂的近平面流体膜的通用场论,并使用重整化群技术分析了它们的临界性质。根据膜 - 激活剂耦合情况,我们发现了声学标度区和扩散标度区之间的交叉,其平均场动力学临界指数分别为z = 1和2。我们认为,在所有空间维度上都精确成立的声学标度会导致一种早期行为,这种行为代表了在运动细胞前沿观察到的时空模式,比如叠加在膜宽度增长上的振荡。在平均场扩散标度的情况下,对平均场指数的单圈修正揭示了与被动界面的 Kardar - Parisi - Zhang 标度不同的普适行为以及强耦合行为的迹象。