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Mode division multiplexing technology for single-fiber optical trapping axial-position adjustment

机译:模分复用技术用于单光纤陷波轴向位置调整

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摘要

We demonstrate trapped yeast cell axial-position adjustment without moving the optical fiber in a single-fiber optical trapping system. The dynamic axial-position adjustment is realized by controlling the power ratio of the fundamental mode beam (LP_(01)) and the low-order mode beam (LP_(11)) generated in a normal single-core fiber. In order to separate the trapping positions produced by the two mode beams, we fabricate a special fiber tapered tip with a selective two-step method. A yeast cell of 6 μm diameter is moved along the optical axis direction for a distance of ~3 μm. To the best of our knowledge, this is the first demonstration of the trapping position adjustment without moving the fiber for single-fiber optical tweezers. The excitation and utilization of multimode beams in a single fiber constitutes a new development for single-fiber optical trapping and makes possible more practical applications in biomedical research fields.
机译:我们演示了捕获的酵母细胞轴向位置调整,而无需在单纤维光学捕获系统中移动光纤。动态轴向位置调整是通过控制在普通单芯光纤中产生的基本模式光束(LP_(01))和低阶模式光束(LP_(11))的功率比来实现的。为了分离由两个模式光束产生的捕获位置,我们采用选择性的两步法制造了一种特殊的光纤锥形尖端。直径为6μm的酵母细胞沿光轴方向移动〜3μm。据我们所知,这是首次展示了在不移动单光纤光镊的光纤的情况下进行陷印位置调整的演示。单模光纤中多模光束的激发和利用构成了单模光纤陷波的新发展,并使得在生物医学研究领域的实际应用成为可能。

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