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Tunable Memory and Activity of Quincke Particles in Micellar Fluid

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【作者】 杨洋张梦菲朱来来张天辉

【Author】 Yang Yang;Meng Fei Zhang;Lailai Zhu;Tian Hui Zhang;Center for Soft Condensed Matter Physics and Interdisciplinary Research & School of Physical Science and Technology, Soochow University;Department of Mechanical Engineering, National University of Singapore;

【通讯作者】 张天辉;

【机构】 Center for Soft Condensed Matter Physics and Interdisciplinary Research & School of Physical Science and Technology, Soochow UniversityDepartment of Mechanical Engineering, National University of Singapore

【摘要】 Memory can remarkably modify the collective behavior of active particles. We show that, in a micellar fluid, Quincke particles driven by a square-wave electric field exhibit a frequency-dependent memory. Upon increasing the frequency, a memory of directions emerges, whereas the activity of particles decreases. As the activity is dominated by interaction, Quincke particles aggregate and form dense clusters, in which the memory of the direction is further enhanced due to the stronger electric interactions. The density-dependent memory and activity result in dynamic heterogeneity in flocking and offer a new opportunity for research of collective motions.

【Abstract】 Memory can remarkably modify the collective behavior of active particles. We show that, in a micellar fluid, Quincke particles driven by a square-wave electric field exhibit a frequency-dependent memory. Upon increasing the frequency, a memory of directions emerges, whereas the activity of particles decreases. As the activity is dominated by interaction, Quincke particles aggregate and form dense clusters, in which the memory of the direction is further enhanced due to the stronger electric interactions. The density-dependent memory and activity result in dynamic heterogeneity in flocking and offer a new opportunity for research of collective motions.

【基金】 supported by the National Natural Science Foundation of China (Grant No. 11974255);Singapore Ministry of Education Academic Research Fund Tier 2 (Grant Nos. MOET2EP50221-0012 and MOE-T2EP50122-0015)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2023年12期
  • 【分类号】O469
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