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Real time microano particle detection and tracking with nanosecond resolution

机译:实时微/纳米粒子检测和纳秒级分辨率跟踪

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Real-time optical imaging and tracking of particles in a complex environment to understand coordinated events has attracted researchers from various areas such as biomechanics. Here, we report a way for real time detection and tracking of micron size particles in time-space-wavelength mapping technology by using a single detector. Experimentally, we demonstrate real time tracking of micron size glass particles with 50ns temporal resolution and <3μm spatial resolution. Submicron resolution and faster temporal resolution are achievable with further optimization. The proposed technique utilizes the time-wavelength technology, which has been proven to be very effective in real time digitization of ultra fast RF signals, and arbitrary waveform generation by random objects. In this work we use a broad band continuum source generated by a 20MHz fiber laser to emit 50nm short pulses at 1550nm. Following a dispersive time wavelength mapping in a chirped fiber grating and space-time-wavelength mapping through a diffraction grating with 600lines/mm, we generate an elliptical beam where each wavelength component corresponds to different time and position in space. Then the generated beam is focused on an image plane by using 20X-40X microscope objectives. The presence of particles on the image plane induces amplitude modulation on each pulse which is captured in real time by a high speed digitizing oscilloscope with 20GS/s sampling rate. The trajectory of the particle is extracted from the dynamic amplitude modulation in a post processing. The same system has also been utilized for imaging of particles by using one dimensional scanning.
机译:实时光学成像和在复杂环境中跟踪颗粒以了解协调事件,吸引了生物力学等各个领域的研究人员。在这里,我们报告一种通过使用单个检测器实时检测和跟踪时空波长映射技术中的微米尺寸颗粒的方法。通过实验,我们演示了具有50ns时间分辨率和<3μm空间分辨率的微米级玻璃颗粒的实时跟踪。通过进一步优化,可以实现亚微米分辨率和更快的时间分辨率。所提出的技术利用了时间-波长技术,该技术已被证明在超快RF信号的实时数字化以及随机物体产生任意波形方面非常有效。在这项工作中,我们使用由20MHz光纤激光器产生的宽带连续谱源在1550nm处发射50nm短脉冲。在a光纤光栅中的色散时间波长映射和通过600线/毫米的衍射光栅进行时空波长映射之后,我们生成了一个椭圆光束,其中每个波长分量对应于空间中的不同时间和位置。然后,使用20X-40X显微镜物镜将产生的光束聚焦在图像平面上。图像平面上存在粒子会在每个脉冲上引起幅度调制,该调制由具有20GS / s采样率的高速数字示波器实时捕获。在后期处理中,从动态幅度调制中提取粒子的轨迹。通过使用一维扫描,相同的系统也已经用于颗粒成像。

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