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Silicon microparticles as handles for optical tweezers experiments

机译:用于光学镊子实验的硅片微粒

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We study the behavior of silicon microparticles in a 1064 nm Gaussian-beam optical tweezers, showing that this semiconductor can be used to perform different types of optical manipulation experiments. Depending on the focal position and the laser power used, the particles can present an oscillatory dynamics in the tweezers or can be stably 3D-trapped with a trap stiffness that allows the application of femtoNewton forces with accuracy. A new, to the best of our knowledge, interpretation based on the photoexcitation of electrons in the valence band is proposed to explain the oscillations, and the quantities associated with such dynamics (e.g., amplitude, period, etc.) were characterized as a function of relevant parameters to optical tweezers setups. (C) 2020 Optical Society of America
机译:我们研究了1064nm高斯光束光学镊子中硅微粒的行为,表明该半导体可用于执行不同类型的光学操作实验。 根据焦点位置和所使用的激光功率,颗粒可以在镊子中呈现振荡动力学,或者可以稳定地捕获捕获刚度,捕获刚度,允许使用Femtonewton力以精度应用。 据我们所知,一种新的,据我们所知,基于价频带中的电子的光筛分来解释来解释振荡,以及与这种动态(例如,幅度,周期等)相关的数量被表征为函数 用于光学镊子设置的相关参数。 (c)2020美国光学学会

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