Department of Physics and Astronomy, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Phys Rev Lett. 2010 Nov 26;105(22):228301. doi: 10.1103/PhysRevLett.105.228301. Epub 2010 Nov 22.
We have measured the Stokes drag on magnetic nanowires suspended in the nematic liquid crystal 4-cyano-4'-pentylbiphenyl (5CB). The effective drag viscosity for wires moving perpendicular to the nematic director differs from that for motion parallel to the director by factors of 0.88 to 2.4, depending on the orientation of the wires and their surface anchoring. When the force on the wires is applied at an oblique angle to the director, the wires move at an angle to the force, demonstrating the existence of a lift force on particles moving in a nematic. This dynamic lift is significantly larger for wires with homeotropic anchoring than with longitudinal anchoring in the experiments, suggesting the lift force as a mechanism for sorting particles according to their surface properties.
我们已经测量了悬浮在向列液晶 4-氰基-4'-戊基联苯(5CB)中的磁性纳米线的斯托克斯阻力。垂直于向列指向运动的线的有效阻力粘度与平行于指向运动的线的阻力粘度不同,其差异因子为 0.88 至 2.4,具体取决于线的取向及其表面锚定。当对线施加的力以倾斜角度施加到指向时,线会以相对于力的角度移动,这表明在向列相中运动的粒子存在升力。在实验中,具有垂直各向异性锚定的线的动态升力明显大于具有纵向锚定的线的动态升力,这表明升力是根据粒子的表面性质对粒子进行分类的一种机制。