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Precise in situ radius measurement of individual optically trapped microspheres using negative optical torque exerted by focused vortex beams

Optics 2024-08-29 v1 Applied Physics

Abstract

We demonstrate a new method for determining the radius of micron-sized particles trapped by a vortex laser beam. The technique is based on measuring the rotation experienced by the center of mass of a microsphere that is laterally displaced by a Stokes drag force to an off-axis equilibrium position. The rotation results from an optical torque pointing along the direction opposite to the vortex beam angular momentum. We fit the rotation angle data for different Laguerre-Gaussian modes taking the radius as a fitting parameter in the Mie-Debye theory of optical tweezers. We also discuss how micron-sized beads can be used as probes for optical aberrations introduced by the experimental setup.

Keywords

Cite

@article{arxiv.2312.17332,
  title  = {Precise in situ radius measurement of individual optically trapped microspheres using negative optical torque exerted by focused vortex beams},
  author = {Kainã Diniz and Tanja Schoger and Guilherme T. Moura and Arthur L. Fonseca and Diney S. Ether and Rafael S. Dutra and Gert-Ludwig Ingold and Nathan B. Viana and Paulo A. Maia Neto},
  journal= {arXiv preprint arXiv:2312.17332},
  year   = {2024}
}

Comments

11 pages, 5 figures