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High frame rate multi-resonance imaging refractometry with distributed feedback dye laser sensor

机译:采用分布式反馈染料激光传感器的高帧率多共振成像折射仪

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摘要

High frame rate and highly sensitive imaging of refractive index changes on a surface is very promising for studying the dynamics of dissolution, mixing and biological processes without the need for labeling. Here, a highly sensitive distributed feedback (DFB) dye laser sensor for high frame rate imaging refractometry without moving parts is presented. DFB dye lasers are low-cost and highly sensitive refractive index sensors. The unique multi-wavelength DFB laser structure presented here comprises several areas with different grating periods. Imaging in two dimensions of space is enabled by analyzing laser light from all areas in parallel with an imaging spectrometer. With this multi-resonance imaging refractometry method, the spatial position in one direction is identified from the horizontal, i.e., spectral position of the multiple laser lines which is obtained from the spectrometer charged coupled device (CCD) array. The orthogonal spatial position is obtained from the vertical spatial position on the spectrometer CCD array as in established spatially resolved spectroscopy. Here, the imaging technique is demonstrated by monitoring the motion of small sucrose molecules upon dissolution of solid sucrose in water. The omission of moving parts improves the robustness of the imaging system and allows a very high frame rate of up to 12 Hz.
机译:对于研究溶解,混合和生物过程的动力学而无需标记,高帧频和表面上折射率变化的高度灵敏成像非常有前途。在这里,提出了一种高灵敏度的分布式反馈(DFB)染料激光传感器,用于没有运动部件的高帧频成像折光仪。 DFB染料激光器是低成本和高灵敏度的折射率传感器。这里介绍的独特的多波长DFB激光器结构包括几个具有不同光栅周期的区域。通过与成像光谱仪并行分析来自所有区域的激光,可以实现二维空间成像。利用这种多共振成像折光法,从水平即从光谱仪带电耦合器件(CCD)阵列获得的多条激光线的光谱位置识别一个方向上的空间位置。正交空间位置是从光谱仪CCD阵列上的垂直空间位置获得的,这与已建立的空间分辨光谱法相同。在此,通过监测固体蔗糖在水中溶解后小蔗糖分子的运动来证明成像技术。省略运动部件可提高成像系统的坚固性,并允许高达12 Hz的极高帧频。

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