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Isotropically active colloids under uniform force fields: from forced to spontaneous motion

机译:在均匀力场下的各向同性活性胶体:从被迫到自发运动

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We consider the inertia-free motion of an isotropic chemically active particle which is exposed to a weak uniform force field. This problem is characterised by two velocity scales, a 'chemical' scale associated with diffusio-osmosis and a 'mechanical' scale associated with the external force. The motion animated by the force deforms the originally spherically symmetric solute cloud surrounding the particle, thus resulting in a concomitant diffusio-osmotic flow which, in turn, modifies the particle speed. A weak-force linearisation furnishes a closed-form expression for the particle velocity as a function of the intrinsic Peclet number alpha associated with the chemical velocity scale. We find that the predicted velocity may become singular at alpha = 4, and that this happens under the same conditions on the surface parameters for which the associated unforced problem is known to exhibit, for alpha > 4, a symmetry-breaking instability giving rise to steady spontaneous motion (Michelin, Lauga & Bartolo, Phys. Fluids, vol. 25, 2013, 061701). Here, a local analysis in a distinguished region near alpha = 4, wherein the velocity scaling is amplified, yields a closed-form description of the imperfect bifurcation which bridges between a perturbed stationary state and a perturbed spontaneous motion. Remarkably, while the direction of spontaneous motion in the absence of an external force is random, in the perturbed case that motion is rendered steady solely in the directions parallel or antiparallel to the external force.
机译:我们考虑各向同性化学活性粒子在弱均匀力场中的惯性自由运动。这个问题有两个速度标度,一个与扩散渗透有关的“化学”标度和一个与外力有关的“机械”标度。受力驱动的运动使粒子周围原本球对称的溶质云变形,从而产生伴随的扩散渗透流,进而改变粒子速度。弱力线性化为粒子速度提供了一个封闭形式的表达式,该表达式是与化学速度标度相关的固有Peclet数α的函数。我们发现,在α=4时,预测的速度可能会变得奇异,并且这种情况发生在已知相关非受迫问题在α>4时表现出对称破缺不稳定性的表面参数的相同条件下,导致稳定的自发运动(Michelin,Lauga&Bartolo,Phys.Fluids,vol.252013,061701)。在这里,在alpha=4附近的一个特殊区域进行局部分析,其中速度标度被放大,得到了不完美分岔的闭合形式描述,该分岔连接了受扰动的稳态和受扰动的自发运动。值得注意的是,虽然在没有外力的情况下,自发运动的方向是随机的,但在扰动情况下,运动仅在与外力平行或反平行的方向上保持稳定。

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