Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, MN 55455.
Complex Systems Division, Beijing Computational Science Research Center, Beijing 100193, China.
Proc Natl Acad Sci U S A. 2018 Jul 10;115(28):7212-7217. doi: 10.1073/pnas.1722505115. Epub 2018 Jun 25.
Bacterial suspensions-a premier example of active fluids-show an unusual response to shear stresses. Instead of increasing the viscosity of the suspending fluid, the emergent collective motions of swimming bacteria can turn a suspension into a superfluid with zero apparent viscosity. Although the existence of active superfluids has been demonstrated in bulk rheological measurements, the microscopic origin and dynamics of such an exotic phase have not been experimentally probed. Here, using high-speed confocal rheometry, we study the dynamics of concentrated bacterial suspensions under simple planar shear. We find that bacterial superfluids under shear exhibit unusual symmetric shear bands, defying the conventional wisdom on shear banding of complex fluids, where the formation of steady shear bands necessarily breaks the symmetry of unsheared samples. We propose a simple hydrodynamic model based on the local stress balance and the ergodic sampling of nonequilibrium shear configurations, which quantitatively describes the observed symmetric shear-banding structure. The model also successfully predicts various interesting features of swarming vortices in stationary bacterial suspensions. Our study provides insights into the physical properties of collective swarming in active fluids and illustrates their profound influences on transport processes.
细菌悬浮液——主动流体的一个主要范例——对剪切应力表现出异常的响应。与悬浮液的粘性增加相反,游动细菌的集体运动可以将悬浮液转变为具有零表观粘性的超流体。尽管在整体流变学测量中已经证明了活性超流体的存在,但这种奇特相的微观起源和动力学尚未通过实验进行探测。在这里,我们使用高速共聚焦流变仪研究了简单平面剪切下浓缩细菌悬浮液的动力学。我们发现,受剪切影响的细菌超流体表现出异常的对称剪切带,这与复杂流体剪切带形成的传统观念相违背,在复杂流体中,稳态剪切带的形成必然会破坏未受剪切样品的对称性。我们提出了一个基于局部应力平衡和非平衡剪切构型遍历抽样的简单流体动力学模型,该模型定量描述了观察到的对称剪切带结构。该模型还成功地预测了静止细菌悬浮液中漩涡的各种有趣特征。我们的研究提供了对主动流体中集体洄游物理特性的深入了解,并说明了它们对输运过程的深远影响。