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Objective-lens-free Fiber-based Position Detection with Nanometer Resolution in a Fiber Optical Trapping System

机译:光纤陷波系统中具有纳米分辨率的无物镜基于光纤的位置检测

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摘要

Position detection with high accuracy is crucial for force calibration of optical trapping systems. Most existing position detection methods require high-numerical-aperture objective lenses, which are bulky, expensive, and difficult to miniaturize. Here, we report an affordable objective-lens-free, fiber-based position detection scheme with 2 nm spatial resolution and 150 MHz bandwidth. This fiber based detection mechanism enables simultaneous trapping and force measurements in a compact fiber optical tweezers system. In addition, we achieved more reliable signal acquisition with less distortion compared with objective based position detection methods, thanks to the light guiding in optical fibers and small distance between the fiber tips and trapped particle. As a demonstration of the fiber based detection, we used the fiber optical tweezers to apply a force on a cell membrane and simultaneously measure the cellular response.
机译:高精度的位置检测对于光学陷波系统的力校准至关重要。现有的大多数位置检测方法都需要高数值孔径的物镜,它们体积大,价格昂贵并且难以小型化。在这里,我们报告了一种价格合理的无物镜,基于光纤的位置检测方案,其空间分辨率为2 nm,带宽为150 MHz。这种基于光纤的检测机制可以在紧凑的光纤镊子系统中同时进行陷波和力测量。此外,与基于目标的位置检测方法相比,我们实现了更可靠的信号采集,失真更少,这归功于光纤中的光导以及光纤尖端与被捕获粒子之间的距离较小。作为基于光纤的检测的演示,我们使用了光纤镊子在细胞膜上施加了力,并同时测量了细胞反应。

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