Everts Jeffrey C, Cichocki Bogdan
Institute of Theoretical Physics, Faculty of Physics, University of Warsaw, Pasteura 5, 02-093 Warsaw, Poland.
Institute of Physical Chemistry, Polish Academy of Sciences, 01-224 Warsaw, Poland.
Phys Rev Lett. 2024 May 24;132(21):218303. doi: 10.1103/PhysRevLett.132.218303.
Odd viscosity (OV) is a transport coefficient in, for example, fluids of self-spinning (active) particles or electrons in an external magnetic field. The key feature of OV is that it does not contribute to dissipation in two spatial dimensions. In contrast, we explicitly show that in the three-dimensional case, OV can contribute indirectly to dissipation by modifying the fluid flow. We quantify the dissipation rate of a single spherical particle moving through a fluid with OV via an exact analytical solution of the generalized stationary creeping flow equations. Our results provide a novel way to quantify the effects of OV by measuring the solid-body motion of a single spherical particle. Moreover, we explicitly demonstrate how complex fluids can be designed in terms of their rheological properties by mixing passive particles with self-spinning active particles.
奇粘度(OV)是一种输运系数,例如在自旋转(活性)粒子的流体或处于外部磁场中的电子中。OV的关键特性是它在二维空间中不会导致耗散。相比之下,我们明确表明,在三维情况下,OV可以通过改变流体流动间接导致耗散。我们通过广义稳态蠕动流方程的精确解析解,量化了单个球形粒子在具有OV的流体中运动时的耗散率。我们的结果提供了一种通过测量单个球形粒子的刚体运动来量化OV效应的新方法。此外,我们明确展示了如何通过将被动粒子与自旋转活性粒子混合来根据其流变性质设计复杂流体。