Doyle P S, Ladoux B, Viovy J L
Physico-Chimie Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
Phys Rev Lett. 2000 May 15;84(20):4769-72. doi: 10.1103/PhysRevLett.84.4769.
The dynamics of a single polymer tethered to a solid surface in a shear flow was observed using fluorescently labeled DNA chains. Dramatic shear enhanced temporal fluctuations in the chain extension were observed. The rate of these fluctuations initially decreased for increasing shear rate gamma; and increased above a critical gamma;. Simulations revealed that these anomalous dynamics arise from a continual recirculating motion of the chain or cyclic dynamics. These dynamics arise from a coupling of the chain velocity in the flow direction to thermally driven fluctuations of the chain in the shear gradient direction.
利用荧光标记的DNA链观察了在剪切流中连接到固体表面的单个聚合物系链的动力学。观察到显著的剪切增强了链伸展的时间波动。这些波动的速率最初随着剪切速率γ的增加而降低;并在临界γ之上增加。模拟表明,这些异常动力学源于链的持续循环运动或循环动力学。这些动力学源于链在流动方向上的速度与链在剪切梯度方向上的热驱动波动之间的耦合。