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The efficiency of fiber optical tweezers for cell manipulation using distinct fabrication methods

机译:使用不同的制造方法对细胞操纵的纤维光学镊子的效率

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In this work, the trapping efficiency of new fiber optical tweezers structures fabricated using photo polymerization and focused ion beam milling techniques is evaluated. The first fabrication methods may present limited capabilities on the tailoring of the structures, and therefore limited operation features. On the other hand, with focused ion beam milling a vast myriad of structures may be accurately fabricated, and contrarily to conventional fabrication methods, more specialized manipulation tools can be developed. In this regard, the performance of FOT for the trapping of yeast cells using spherical lenses (photo polymerization) and spiral phase lenses (FIB) will be presented. In addition, finite difference time domain (FDTD) simulations of the full vectorial optical propagation through the designed structures and the corresponding calculation of the optical forces are presented and different designs are evaluated.
机译:在这项工作中,评估了使用光聚合和聚焦离子束铣削技术制造的新纤维光学镊子结构的捕获效率。第一制造方法可以在结构的剪裁和因此有限的操作特征上存在有限的能力。另一方面,对于聚焦离子束铣削,可以精确地制造巨大的结构,并且与传统的制造方法相反,可以开发更多的专业化工具。在这方面,将呈现使用球形透镜(光聚合)和螺旋相透镜(FIB)捕获酵母细胞的捕获的表现。另外,呈现了通过设计的结构的全矢量光学传播的有限差分时域(FDTD)模拟和光学力的相应计算,并评估不同的设计。

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