arXiv · 0907.2111
Rotational dynamics of optically trapped polymeric nanofibers
Abstract
The optical trapping of polymeric nanofibers and the characterization of the rotational dynamics are reported. A strategy to apply a torque to a polymer nanofiber, by tilting the trapped fibers using a symmetrical linear polarized Gaussian beam is demonstrated. Rotation frequencies up to 10 Hz are measured, depending on the trapping power, the fiber length and the tilt angle. A comparison of the experimental rotation frequencies in the different trapping configurations with calculations based on optical trapping and rotation of linear nanostructures through a T-Matrix formalism, accurately reproduce the measured data, providing a comprehensive description of the trapping and rotation dynamics.
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Antonio Alvaro Ranha Neves, Andrea Camposeo, Stefano Pagliara, Rosalba Saija, Ferdinando Borghese, Paolo Denti, Maria Antonia Iati, Roberto Cingolani, Onofrio M. Marago, Dario Pisignano. 2009-07-13. Rotational dynamics of optically trapped polymeric nanofibers. https://doi.org/10.1364/oe.18.000822
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