On the aggregation kinetics of two particles trapped in an optical tweezers

被引:6
|
作者
Xu, SH
Lou, LR [1 ]
Li, YM
Sun, ZW
机构
[1] Univ Sci & Technol China, Dept Phys, Hefei 230026, Anhui, Peoples R China
[2] Univ Sci & Technol China, Hefei Natl Lab Phys Sci Microscale, Hefei 230026, Anhui, Peoples R China
基金
中国国家自然科学基金;
关键词
aggregation kinetics; stability ratio; optical tweezers; collision frequency; colloids;
D O I
10.1016/j.colsurfa.2004.12.041
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Two suspended particles trapped in an optical tweezers will collide with each other in a confined volume. This characteristic has been successfully used to study the stability of a dispersion at the individual particle level. In this paper, we present a phenomenological theory to describe the aggregation kinetics of the two trapped particles. The experimental results are analyzed applying the theory. The analysis shows that the statuses of two particles undergo two stages, "compact status" and "relaxed status", after they are trapped into the optical tweezers. The time in the compact status is very short and the two particles collide once in the compact status. Then the status of two particles transforms to the relaxed status, in which the two particles collide with each other at a constant and low frequency. It gives a clear understanding of the aggregation kinetics of two particles trapped in optical tweezers. Based on the formulation, different approximate formulas have been deduced to get the stability ratio from the microscopic experimental results. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:159 / 163
页数:5
相关论文
共 50 条
  • [11] Multi-Particle sorting using signals from particles trapped by single optical fiber tweezers
    Yao, Linzhi
    Wang, Tao
    Jiang, Chunlei
    Zhao, Qian
    Sui, Yuan
    Lu, Yan
    Wang, Yunkai
    Sun, Yu
    Cong, Zhicheng
    Dong, Taiji
    OPTICAL FIBER TECHNOLOGY, 2024, 88
  • [12] On the Positioning Problem of a Microscopic Particle Trapped in Optical Tweezers
    Aguilar-Ibanez, Carlos
    Rosas-Soriano, Luis I.
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2009, 2009
  • [13] Angular and position stability of a nanorod trapped in an optical tweezers
    Bareil, Paul B.
    Sheng, Yunlong
    OPTICS EXPRESS, 2010, 18 (25): : 26388 - 26398
  • [14] Holographic position measurement of nanoparticles trapped with optical tweezers
    Hayasaki, Yoshio
    Sato, Akira
    2012 INTERNATIONAL SYMPOSIUM ON OPTOMECHATRONIC TECHNOLOGIES (ISOT), 2012,
  • [15] Interacting Circular Rydberg Atoms Trapped in Optical Tweezers
    Mehaignerie, P.
    Machu, Y.
    Hernandez, A. Duran
    Creutzer, G.
    Papoular, D. J.
    Raimond, J. M.
    Sayrin, C.
    Brune, M.
    PRX QUANTUM, 2025, 6 (01):
  • [16] Double Negative Particles in Optical Tweezers
    Ambrosio, L. A.
    Hernandez-Figueroa, H. E.
    2010 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (QELS), 2010,
  • [17] Optical tweezers with optically resonant particles
    Kendrick, M. J.
    McIntyre, D. H.
    Ostroverkhova, O.
    2009 CONFERENCE ON LASERS AND ELECTRO-OPTICS AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (CLEO/QELS 2009), VOLS 1-5, 2009, : 3007 - 3008
  • [18] Visualizing colloidal aggregation with femtosecond optical tweezers
    Goswami, Debabrata
    OPTICAL TRAPPING AND OPTICAL MICROMANIPULATION XVI, 2019, 11083
  • [19] Optical forces on arbitrary shaped particles in optical tweezers
    Ling, Lin
    Zhou, Fei
    Huang, Lu
    Li, Zhi-Yuan
    JOURNAL OF APPLIED PHYSICS, 2010, 108 (07)
  • [20] High trapping forces for high-refractive index particles trapped in dynamic arrays of counterpropagating optical tweezers
    van der Horst, Astrid
    van Oostrum, Peter D. J.
    Moroz, Alexander
    van Blaaderen, Alfons
    Dogterom, Marileen
    APPLIED OPTICS, 2008, 47 (17) : 3196 - 3202