Stengele Philipp, Lüders Anton, Nielaba Peter
Statistical and Computational Physics, Department of Physics, University of Konstanz, 78457, Konstanz, Germany.
Sci Rep. 2023 Sep 12;13(1):15071. doi: 10.1038/s41598-023-42119-9.
We study the influence of the cargo shape on the capture and transport process of colloidal rods via swarms of active particles using Brownian dynamics simulations. Starting at random initial conditions, active particles that interact via the Lennard-Jones potential and possess a tuneable speed are utilised to capture passive rods inside a hexagonal cage of individually addressable units. By adjusting the velocity of the individual active particles, the rod can then be transported. To guarantee a successful capture process (with a strong localisation), we find that specific geometric and energetic constraints have to be met; i.e., the length of the rod must approximately be in the vicinity of an odd multiple of the lattice constant of the hexagonal cage, and the Lennard-Jones interaction strength must be in the range of [Formula: see text] to [Formula: see text]. If the cargo aspect ratio gets too large, the subsequent transport of successfully captured rods can fail. For systems where transport is possible, an increase in the cargo aspect ratio decreases the achievable transport velocity. Our work shows that the particle shape must be considered while designing interaction rules to accomplish specific tasks via groups of controllable units.
我们通过布朗动力学模拟研究了货物形状对胶体棒通过活性粒子群的捕获和运输过程的影响。从随机初始条件开始,利用通过 Lennard-Jones 势相互作用且速度可调的活性粒子在一个由可单独寻址单元组成的六边形笼子内捕获被动棒。通过调整各个活性粒子的速度,然后可以运输棒。为了确保成功的捕获过程(具有强定位性),我们发现必须满足特定的几何和能量约束;即,棒的长度必须大约在六边形笼子晶格常数奇数倍的附近,并且 Lennard-Jones相互作用强度必须在[公式:见文本]到[公式:见文本]的范围内。如果货物的纵横比变得太大,成功捕获的棒的后续运输可能会失败。对于可以进行运输的系统,货物纵横比的增加会降低可实现的运输速度。我们的工作表明,在设计相互作用规则以通过可控单元组完成特定任务时,必须考虑粒子形状。