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Escape from an optoelectronic tweezer trap: experimental results and simulations

  • Shuailong Zhang
  • , Adele Nikitina
  • , Yujie Chen
  • , Yanfeng Zhang
  • , L. I.U. Lin
  • , Andrew G. Flood
  • , Joan Juvert
  • , M. Dean Chamberlain
  • , Nazir P. Kherani
  • , Steven L. Neale
  • , Aaron R. Wheeler*
  • *此作品的通讯作者
  • University of Toronto
  • Sun Yat-Sen University
  • Ghent University
  • University of Glasgow

科研成果: 期刊稿件文章同行评审

摘要

Optoelectronic tweezers (OET) are a microsystem actuation technology capable of moving microparticles at mm s−1 velocities with nN forces. In this work, we analyze the behavior of particles manipulated by negative dielectrophoresis (DEP) forces in an OET trap. A user-friendly computer interface was developed to generate a circular rotating light pattern to control the movement of the particles, allowing their force profiles to be conveniently measured. Three-dimensional simulations were carried out to clarify the experimental results, and the DEP forces acting on the particles were simulated by integrating the Maxwell stress tensor. The simulations matched the experimental results and enabled the determination of a new “hopping” mechanism for particle-escape from the trap. As indicated by the simulations, there exists a vertical DEP force at the edge of the light pattern that pushes up particles to a region with a smaller horizontal DEP force. We propose that this phenomenon will be important to consider for the design of OET micromanipulation experiments for a wide range of applications.

源语言英语
页(从-至)5300-5309
页数10
期刊Optics Express
26
5
DOI
出版状态已出版 - 5 3月 2018
已对外发布

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