Lier Ruben, Duclut Charlie, Bo Stefano, Armas Jay, Jülicher Frank, Surówka Piotr
Max Planck Institute for the Physics of Complex Systems, 01187 Dresden, Germany.
Würzburg-Dresden Cluster of Excellence ct.qmat, 01187 Dresden, Germany.
Phys Rev E. 2023 Aug;108(2):L023101. doi: 10.1103/PhysRevE.108.L023101.
When a body moves through a fluid, it can experience a force orthogonal to its movement called lift force. Odd viscous fluids break parity and time-reversal symmetry, suggesting the existence of an odd lift force on tracer particles, even at vanishing Reynolds numbers and for symmetric geometries. It was previously found that an incompressible odd fluid cannot induce lift force on a tracer particle with no-slip boundary conditions, making signatures of odd viscosity in the two-dimensional bulk elusive. By computing the response matrix for a tracer particle, we show that an odd compressible fluid can produce an odd lift force. Using shell localization, we provide analytic expressions for the drag and odd lift forces acting on the tracer particle in a steady state and also at finite frequency. Importantly, we find that the existence of an odd lift force in a steady state requires taking into account the nonconservation of the fluid mass density due to the coupling between the two-dimensional surface and the three-dimensional bulk fluid.
当一个物体在流体中移动时,它会受到一个与其运动方向正交的力,称为升力。奇特的粘性流体打破了宇称和时间反演对称性,这表明即使在雷诺数为零且几何形状对称的情况下,示踪粒子上也存在奇特的升力。此前发现,对于具有无滑移边界条件的示踪粒子,不可压缩的奇特流体不会产生升力,这使得二维体中奇特粘度的特征难以捉摸。通过计算示踪粒子的响应矩阵,我们表明可压缩的奇特流体可以产生奇特的升力。利用壳层局域化,我们给出了稳态和有限频率下作用在示踪粒子上的阻力和奇特升力的解析表达式。重要的是,我们发现稳态下奇特升力的存在需要考虑由于二维表面和三维体流体之间的耦合导致的流体质量密度的不守恒。