Jeney Sylvia, Lukić Branimir, Kraus Jonas A, Franosch Thomas, Forró László
Institut de Physique de la Matière Complexe, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
Phys Rev Lett. 2008 Jun 20;100(24):240604. doi: 10.1103/PhysRevLett.100.240604.
The motion of an optically trapped sphere constrained by the vicinity of a wall is investigated at times where hydrodynamic memory is significant. First, we quantify, in bulk, the influence of confinement arising from the trapping potential on the sphere's velocity autocorrelation function C(t). Next, we study the splitting of C(t) into C_{parallel}(t) and C_{perpendicular}(t), when the sphere is approached towards a surface. Thereby, we monitor the crossover from a slow t{-3/2} long-time tail, away from the wall, to a faster t{-5/2} decay, due to the subtle interplay between hydrodynamic backflow and wall effects. Finally, we discuss the resulting asymmetric time-dependent diffusion coefficients.
在流体动力学记忆显著的情况下,研究了受壁面附近限制的光学捕获球体的运动。首先,我们在整体上量化了捕获势引起的限制对球体速度自相关函数C(t)的影响。接下来,当球体靠近表面时,我们研究C(t)分解为C平行(t)和C垂直(t)的情况。由此,由于流体动力回流和壁面效应之间的微妙相互作用,我们监测了从远离壁面的缓慢t^(-3/2)长时间尾部到更快的t^(-5/2)衰减的转变。最后,我们讨论了由此产生的不对称时间相关扩散系数。