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首页> 外文期刊>JEOS:RP >Independent trapping, manipulation and characterization by an all-optical biophotonics workstation
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Independent trapping, manipulation and characterization by an all-optical biophotonics workstation

机译:全光学生物光子学工作站的独立陷波,操纵和表征

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Optical trapping has enabled a multitude of applications focusing, in particular, on non-invasive studies of cellular material. The full potential of optical trapping has, however, not yet been exploited due to restricted access to the trapped samples, caused by high numerical aperture objectives needed to focus the trapping laser beams. Here, we use our recently developed biophotonics workstation to overcome this limitation by introducing probing and spectroscopic characterization of optically trapped particles in a side-view geometry perpendicular to the trapping beams rather than in the traditional top-view geometry parallel to the trapping beams. Our method is illustrated by CARS and fluorescence spectroscopy of trapped polystyrene beads. The side-view geometry opens intriguing possibilities for accessing trapped particles with optical as well as other types of probe methods independent from the trapping process.
机译:光学捕获已实现了多种应用,尤其是专注于细胞材料的非侵入性研究。然而,由于聚焦激光束所需的高数值孔径物镜导致对被捕获样品的访问受限,因此尚未充分发挥光阱的全部潜力。在这里,我们使用我们最近开发的生物光子工作站,通过在垂直于捕获束的侧视图几何结构中而不是在平行于捕获束的传统顶视图几何结构中引入光学捕获粒子的探测和光谱表征,克服了这一限制。 CARS和捕获的聚苯乙烯珠的荧光光谱说明了我们的方法。侧视图的几何形状为通过光学方法以及其他与捕获过程无关的探针方法访问捕获的粒子提供了有趣的可能性。

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