论文标题

游泳细菌的极性喷射由图案化的液晶凝结

Polar jets of swimming bacteria condensed by a patterned liquid crystal

论文作者

Turiv, Taras, Koizumi, Runa, Thijssen, Kristian, Genkin, Mikhail M., Yu, Hao, Peng, Chenhui, Wei, Qi-Huo, Yeomans, Julia M., Aranson, Igor S., Doostmohammadi, Amin, Lavrentovich, Oleg D.

论文摘要

活性物质表现出显着的集体行为,其中由活性粒子连续产生的流与这些颗粒的方向顺序交织在一起。这种关系仍然很难理解,因为活动和秩序难以独立控制。在这里,我们通过在液晶环境中探索游泳细菌的动力学来证明这种相互作用的重要方面,并具有预设计的周期性散布和分子方向的弯曲。将细菌从弯曲区域排出,并将其凝结成极性喷射,这些喷头沿着飞机区域单向传播和运输货物。即使局部浓度超过了非图案系统中弯曲不稳定性的阈值,细菌喷气机仍然保持稳定。集体极性推进和弯曲和张力的不同作用是通过对流扩散模型以及将系统视为两相活动列表的数值模拟来解释的。前图案液晶培养基的能力将游泳细菌的混沌运动简化为极性喷气机的混乱运动,这些媒介可以沿着预先设计的轨迹携带货物,为潜在的细胞分类,显微镜输送和软性微生物制剂提供了潜在应用的门。

Active matter exhibits remarkable collective behavior in which flows, continuously generated by active particles, are intertwined with the orientational order of these particles. The relationship remains poorly understood as the activity and order are difficult to control independently. Here we demonstrate important facets of this interplay by exploring dynamics of swimming bacteria in a liquid crystalline environment with pre-designed periodic splay and bend in molecular orientation. The bacteria are expelled from the bend regions and condense into polar jets that propagate and transport cargo unidirectionally along the splay regions. The bacterial jets remain stable even when the local concentration exceeds the threshold of bending instability in a non-patterned system. Collective polar propulsion and different role of bend and splay are explained by an advection-diffusion model and by numerical simulations that treat the system as a two-phase active nematic. The ability of prepatterned liquid crystalline medium to streamline the chaotic movements of swimming bacteria into polar jets that can carry cargo along a predesigned trajectory opens the door for potential applications in cell sorting, microscale delivery and soft microrobotics.

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