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A differential weak measurement system based on Sagnac interferometer for self-referencing biomolecule detection

机译:基于SAGNAC干涉仪的差动弱测量系统,用于自引用生物分子检测

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A differential weak measurement system was presented, exhibiting the self-referencing function for biomolecule real time detection as a label-free optical biosensor. We built a Sagnac interferometer, which limited horizontal (H) and vertical (V) polarization to propagating along the common path but in opposite directions to realize weak measurements with two measuring channels installed in two corners of this Sagnac interferometer. By introducing two half wave plates into the system alternately with the two channels to convert between H and V polarization, we obtained a differential measurement for phase delay, which could quantitatively characterize the refractive index change corresponding to the concentration of samples in the channels. With this system, a real time monitor of molecule concentration in the dialysis process was accomplished, demonstrating the function of self-referencing, which is important for optical label-free molecule detection in a complex biological sample solution.
机译:提出了一种差分弱测量系统,表现为生物分子实时检测作为无标签光学生物传感器的自我参照功能。我们构建了一个张切值干涉仪,其有限的水平(H)和垂直(V)偏振,以沿公共路径传播,而是在相反的方向上传播,以实现安装在该凸起干涉仪的两个角落中的两个测量通道的弱测量。通过将两个半波片交替地与两个通道一起引入系统,以在H和V极化之间转换,我们获得了相位延迟的差分测量,这可以定量表征与通道中样品浓度相对应的折射率变化。通过该系统,完成了透析过程中分子浓度的实时监测,证明了自我参照的功能,这对于在复杂的生物样品溶液中的无光学标记分子检测是重要的。

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