4.6 Article

Three-dimensional closed-loop control of self-propelled microjets

Journal

APPLIED PHYSICS LETTERS
Volume 103, Issue 17, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4826141

Keywords

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Funding

  1. Volkswagen Foundation [86 362]
  2. European Research Council under the European Union [311529]
  3. MIRA-Institute for Biomedical Technology and Technical Medicine, University of Twente

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We demonstrate precise closed-loop control of microjets under the influence of the magnetic fields in three-dimensional (3D) space. For this purpose, we design a magnetic-based control system that directs the field lines towards reference positions. Microjets align along the controlled field lines using the magnetic torque exerted on their magnetic dipole, and move towards the reference positions using their self-propulsion force. We demonstrate the controlled motion of microjets in 3D space, and show that their propulsion force allows them to overcome vertical forces, such as buoyancy forces, interaction forces with oxygen bubbles, and vertical flow. The closed-loop control localizes the microjets within a spherical region of convergence with an average diameter of 406+/-220 mu m, whereas the self-propulsion force allows them to swim at an average speed of 222+/-74 mu m/s within the horizontal plane. Furthermore, we observe that the controlled microjets dive downward and swim upward towards reference positions at average speeds of 232+/-40 mu m/s and 316+/-81 mu m/s, respectively. (C) 2013 AIP Publishing LLC.

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