Direct evidence for three-dimensional off-axis trapping with single Laguerre-Gaussian beam

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Abstract

Optical tweezers are often applied to control the dynamics of objects by scanning light. However, there is a limitation that objects fail to track the scan when the drag exceeds the trapping force. In contrast, Laguerre-Gaussian (LG) beams can directly control the torque on objects and provide a typical model for nonequilibrium systems such as Brownian motion under external fields. Although stable "mid-water" trapping is essential for removing extrinsic hydrodynamic effects in such studies, three-dimensional trapping by LG beams has not yet been clearly established. Here we report the three-dimensional off-axis trapping of dielectric spheres using high-quality LG beams generated by a special holographic method. The trapping position was estimated as ∼ half the wavelength behind the beam waist. These results establish the scientific groundwork of LG trapping and the technical basis of calibrating optical torque to provide powerful tools for studying energy-conversion mechanisms and the nonequilibrium nature of biological molecules under torque.

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Otsu, T., Ando, T., Takiguchi, Y., Ohtake, Y., Toyoda, H., & Itoh, H. (2014). Direct evidence for three-dimensional off-axis trapping with single Laguerre-Gaussian beam. Scientific Reports, 4. https://doi.org/10.1038/srep04579

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