Keogh Ryan R, Chandragiri Santhan, Loewe Benjamin, Ala-Nissila Tapio, Thampi Sumesh P, Shendruk Tyler N
School of Physics and Astronomy, The University of Edinburgh, Peter Guthrie Tait Road, Edinburgh EH9 3FD, United Kingdom.
Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai 600036, India.
Phys Rev E. 2022 Jul;106(1):L012602. doi: 10.1103/PhysRevE.106.L012602.
We show that confining extensile nematics in three-dimensional (3D) channels leads to the emergence of two self-organized flow states with nonzero helicity. The first is a pair of braided antiparallel streams-this double helix occurs when the activity is moderate, anchoring negligible, and reduced temperature high. The second consists of axially aligned counter-rotating vortices-this grinder train arises between spontaneous axial streaming and the vortex lattice. These two unanticipated helical flow states illustrate the potential of active fluids to break symmetries and form complex but organized spatiotemporal structures in 3D fluidic devices.
我们表明,将可伸展向列相限制在三维(3D)通道中会导致出现两种具有非零螺旋度的自组织流动状态。第一种是一对编织的反平行流——当活性适中、锚定可忽略且温度降低较高时会出现这种双螺旋。第二种由轴向对齐的反向旋转涡旋组成——这种磨轮机状排列出现在自发轴向流动和涡旋晶格之间。这两种意想不到的螺旋流动状态说明了活性流体在三维流体装置中打破对称性并形成复杂但有组织的时空结构的潜力。