| 注册
首页|期刊导航|物理学报|活性浴中惰性粒子形状对有效作用力的影响

活性浴中惰性粒子形状对有效作用力的影响

宁鲁慧 张雪 杨明成 郑宁 刘鹏 彭毅

物理学报2024,Vol.73Issue(15):216-223,8.
物理学报2024,Vol.73Issue(15):216-223,8.DOI:10.7498/aps.73.20240650

活性浴中惰性粒子形状对有效作用力的影响

Effect of passive particle shape on effective force in active bath

宁鲁慧 1张雪 2杨明成 3郑宁 2刘鹏 2彭毅4

作者信息

  • 1. 中国石油大学(北京),油气光学探测技术北京市重点实验室,北京 102249||中国石油大学(北京)理学院,能源交叉学科基础研究中心,北京 102249
  • 2. 北京理工大学物理学院,北京 100081
  • 3. 中国科学院物理研究所,北京凝聚态物理国家研究中心,软物质物理实验室,北京 100190||中国科学院大学物理科学学院,北京 100049||松山湖材料实验室,东莞 523808
  • 4. 中国科学院物理研究所,北京凝聚态物理国家研究中心,软物质物理实验室,北京 100190||中国科学院大学物理科学学院,北京 100049
  • 折叠

摘要

Abstract

In active matter,the effective force between passive objects is crucial for their structure and dynamics,which is the basis for understanding the complex behaviors within active systems.Unlike equilibrium states,the factors such as the surface configuration,size,and confinement strength significantly influence the effective forces between passive particles.Previous studies have shown that the shapes of passive particles affect the aggregation of active particles,leading to different forces experienced by passive particles with different shapes.However,recently,a long-range attractive force between passive platelike particles,caused by the bacterial flow field instead of the direct bacterium-plate collisions in active bacterial suspensions,has been found.This raises an intriguing question:how does hydrodynamics affect the forces on passive particles of different shapes in different ways?In this work,we investigate the effective forces exerted on passive spherical and plate-like particles immersed in bacterial suspensions by optical-tweezers experiments.The effective force between passive particles can be calculated from the formula,Feff=k<∆d>/2<∆d>,where represents the difference in distance between the passive particles in the bacterial bath and those in the solution without bacteria,k is the effective stiffness of optical traps.The Feff>0 indicates a repulsive force between passive particles,and the Feff<0 represents an effective attractive force between passive particles.Our results demonstrate that the passive spherical particles experience short-range repulsion,while plate-like particles are subjected to long-range attraction.This highlights the substantial effect of particle shape on their effective forces. The forces on passive particles are mainly attributed to two factors:direct bacterium-particle collisions and the bacterial flow field.The analysis of the bacterial concentration and orientation distribution around passive particles reveals that for spherical particles,the concentration of bacteria between particles is higher than that outside the particles,but there is almost no difference in the orientation order between bacteria inside and outside the particles.This suggests that the effective repulsion between spherical particles is mainly due to the direct bacterial collisions.Conversely,for plate-like particles,the long-range attraction is primarily influenced by the bacterial flow field rather than their direct collisions,which is evidenced by the higher bacterial density and orientation order inside the two plates compared with those outside the two plates.This study provides strong evidence that the effective force between passive particles is shape dependent in active bath,and offers new insights into controlling active-directed assembly.

关键词

活性物质/光镊/有效作用力/粒子形状

Key words

active matter/optical tweezers/effective interaction/particle shape

引用本文复制引用

宁鲁慧,张雪,杨明成,郑宁,刘鹏,彭毅..活性浴中惰性粒子形状对有效作用力的影响[J].物理学报,2024,73(15):216-223,8.

基金项目

国家自然科学基金(批准号:12304245,12374205,12074406)、油气资源与工程全国重点实验室定向课题(批准号:PRE/DX-2407)、北京凝聚态物理国家研究中心开放课题面上基金(批准号:2023BNLCMPKF014)和中国石油大学(北京)科研基金(批准号:2462023YJRC031)资助的课题.Project supported by the National Natural Science Foundation of China(Grant Nos.12304245,12374205,12074406),the National Key Laboratory of Petroleum Resources and Engineering(Grant No.PRE/DX-2407),the Beijing National Laboratory for Condensed Matter Physics,China(Grant No.2023BNLCMPKF014),and the Science Foundation of China University of Petroleum-Beijing,China(Grant No.2462023YJRC031). (批准号:12304245,12374205,12074406)

物理学报

OA北大核心CSTPCD

1000-3290

访问量0
|
下载量0
段落导航相关论文