Distributed Force Control for Microrobot Manipulation via Planar Multi‐Spot Optical Tweezer

Abstract: Optical tweezers (OT) represent a versatile tool for micro‐manipulation. To avoid damages to living cells caused by illuminating laser directly on them, microrobots controlled by OT can be used for manipulation of cells or living organisms in microscopic scale. Translation and planar rotation motion of microrobots can be realized by using a multi‐spot planar OT. However, out‐of‐plane manipulation of microrobots is difficult to achieve with a planar OT. This paper presents a distributed manipulation scheme based on multiple laser spots, which can control the out‐of‐plane pose of a microrobot along multiple axes. Different microrobot designs have been investigated and fabricated for experimental validation. The main contributions of this paper include: i) development of a generic model for the structure design of microrobots which enables multi‐dimensional (6D) control via conventional multi‐spot OT; ii) introduction of the distributed force control for microrobot manipulation based on characteristic distance and power intensity distribution. Experiments are performed to demonstrate the effectiveness of the proposed method and its potential applications, which include indirect manipulation of micro‐objects.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Distributed Force Control for Microrobot Manipulation via Planar Multi‐Spot Optical Tweezer ; volume:8 ; number:21 ; year:2020 ; extent:15
Advanced optical materials ; 8, Heft 21 (2020) (gesamt 15)

Creator
Zhang, Dandan
Barbot, Antoine
Lo, Benny
Yang, Guang‐Zhong

DOI
10.1002/adom.202000543
URN
urn:nbn:de:101:1-2022070311164528986710
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:35 AM CEST

Data provider

This object is provided by:
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.

Associated

  • Zhang, Dandan
  • Barbot, Antoine
  • Lo, Benny
  • Yang, Guang‐Zhong

Other Objects (12)